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Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Jejoong Yoo, James Wilson, and Aleksei Aksimentiev. "Improved model of hydrated calcium ion for molecular dynamics simulations using classical biomolecular force fields." Biopolymers 105:752-763 (2016). PDF icon bip22868-sup-0001-suppinfo01.pdf (921.41 KB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)
Kerstin Göpfrich*, Chen-Yu Li*, Maria Ricci, Satya Prathyusha Bhamidimarri, Jejoong Yoo, Bertalan Gyenes, Alexander Ohmann, Mathias Winterhalter, Aleksei Aksimentiev, and Ulrich F. Keyser. "Large-Conductance Transmembrane Porin Made from DNA Origami." ACS Nano 10:8207-8214 (2016). PDF icon supporting_information.pdf (3.19 MB)

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