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2022    
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
David Winogradoff, Han-Yi Chou, Christopher Maffeo, and Aleksei Aksimentiev. "Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). PDF icon Supplementary Information (20.83 MB)
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).
Merle Scherf, Florian Scheffler, Christopher Maffeo, Ulrich Kemper, Jingjing Ye, Aleksei Aksimentiev, Ralf Seidel, and Uta Reibetanz. "Trapping of protein cargo molecules inside DNA origami nanocages." Nanoscale 14:18041-18050 (2022).

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