Publications
Beyond the Gene Chip." Bell Labs Tech J 10:5-22 (2005).
"Detecting SNPs using a synthetic nanopore." Nano Lett 7:1680-5 (2007).
"Detecting SNPs using a synthetic nanopore." Nano Lett 7:1680-5 (2007).
"In meso crystal structure and docking simulations suggest an alternative proteoglycan binding site in the OpcA outer membrane adhesin." Proteins 71:24-34 (2008).
"Stretching and unzipping nucleic acid hairpins using a synthetic nanopore." Nucleic Acids Res 36:1532-41 (2008).
"Microscopic mechanics of hairpin DNA translocation through synthetic nanopores." Biophys J 96:593-608 (2009).
"Analyzing the forces binding a restriction endonuclease to DNA using a synthetic nanopore." Nucleic Acids Res 37:4170-9 (2009).
"Analyzing the forces binding a restriction endonuclease to DNA using a synthetic nanopore." Nucleic Acids Res 37:4170-9 (2009).
"Dehydration and ionic conductance quantization in nanopores." J Phys Condens Matter 22:454126 (2010).
"Slowing the translocation of double-stranded DNA using a nanopore smaller than the double helix." Nanotechnology 21:395501 (2010).
"Third Generation DNA Sequencing with a Nanopore." In Nanopores: Sensing fundamental biological interactions at the single molecule level, edited by Samir M. Iqbal and Rashid Bashir, 287-311. Springer US, 2011.
"Nanopore analysis of individual RNA/antibiotic complexes." ACS Nano 5:9345-53 (2011).
"Molecular dynamics study of MspA arginine mutants predicts slow DNA translocations and ion current blockades indicative of DNA sequence." ACS Nano 6:6960-8 (2012).
Supporting Information (pdf) (2.36 MB)
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Slowing down DNA translocation through a nanopore in lithium chloride." Nano Lett 12:1038-44 (2012).
"Single-base DNA discrimination via transverse ionic transport." Nanotechnology 24:415101 (2013).
"Rectification of Ion Current in Nanopores Depends on the Type of Monovalent Cations: Experiments and Modeling." The Journal of Physical Chemistry C 118:9809-9819 (2014).
"Shearing of the CENP-A dimerization interface mediates plasticity in the octameric centromeric nucleosome." Scientific reports 5 (2015).
"Highly permeable artificial water channels that self-assemble into two-dimensional arrays." Proceedings of the National Academy of Science 112:9810-9815 (2015).
"Highly permeable artificial water channels that self-assemble into two-dimensional arrays." Proceedings of the National Academy of Science 112:9810-9815 (2015).
"Plasmonic Nanopores for Trapping, Controlling Displacement, and Sequencing of DNA." ACS Nano 9:10598-10611 (2015).
nn5b04173_si_001.pdf (681.52 KB)
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Effect of Cytosine Modifications on DNA Flexibility and Nucleosome Mechanical Stability." Nature Communications 7:10813 (2016).
ncomms10813-s1.pdf (529.11 KB)
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Promiscuous histone mis-assembly is actively prevented by chaperones." Journal of the American Chemical Society 138:13207-13218 (2016).
The cover image on JACS (2.25 MB)
SI for the paper (33.5 MB)
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Promiscuous Histone Mis-Assembly Is Actively Prevented by Chaperones." J Am Chem Soc 138:13207-13218 (2016).
"Mechanical Trapping of DNA in a Double-Nanopore System." Nano Letters 16:8021-8028 (2016).
Supporting Information (pdf) (2.24 MB)
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Interference-free detection of genetic biomarkers using synthetic dipole-facilitated nanopore dielectophoresis." ACS Nano 11:1204-1213 (2017).
Supporting Information (pdf) (8.47 MB)
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Selective Permeability of Truncated Aquaporin 1 in Silico." ACS Biomaterials Science & Engineering 3:342-348 (2017).
Supporting Information (pdf) (459.46 KB)
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SDS-assisted protein transport through solid-state nanopores." Nanoscale 9:11685-11693 (2017).
Supporting Information (1.24 MB)
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Nanoscale Ion Pump Derived from a Biological Water Channel." The Journal of Physical Chemistry B 121:7899-7906 (2017).
supporting_information.pdf (8.9 MB)
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PoreDesigner for tuning solute selectivity in a robust and highly permeable outer membrane pore." Nature Communications 9:3661 (2018).
supporting_information.pdf (1.34 MB)
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Electro-Mechanical Conductance Modulation of a Nanopore Using a Removable Gate." ACS Nano 13:2398-2409 (2019).
supplementary_material.pdf (8.62 MB)
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The Oligomerization Landscape of Histones." Biophysical Journal 116:1845-1855 (2019).
"Atoms to Phenotypes: Molecular Design Principles of Cellular Energy Metabolism." Cell 179:1098-1111.e23 (2019).
"A tetrahedral DNA nanorobot with conformational change in response to molecular trigger." Nanoscale (2021).
"Translocation of DNA through Ultrathin Nanoslits." Advanced Materials 33:2007682 (2021).
yang2021si.pdf (1.2 MB)
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Cations Regulate Membrane Attachment and Functionality of DNA Nanostructures." Journal of the American Chemical Society 143:7358-7367 (2021).
si.pdf (2.68 MB)
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The emerging landscape of single-molecule protein sequencing technologies." Nature Methods 18 (2021).
"The emerging landscape of single-molecule protein sequencing technologies." Nature Methods 18 (2021).
"The emerging landscape of single-molecule protein sequencing technologies." Nature Methods 18 (2021).
"The emerging landscape of single-molecule protein sequencing technologies." Nature Methods 18 (2021).
"Multiple rereads of single proteins at single–amino acid resolution using nanopores." Science 374:1509-1513 (2021).
si.pdf (33.12 MB)
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A nanoscale reciprocating rotary mechanism with coordinated mobility control." Nature Communications 12:7138 (2021).
"A nanoscale reciprocating rotary mechanism with coordinated mobility control." Nature Communications 12:7138 (2021).
"Super-Resolution Detection of DNA Nanostructures Using a Nanopore." Advanced Materials:2207434 (2023).
"Dehydrated Biomimetic Membranes with Skinlike Structure and Function." ACS Applied Materials & Interfaces 16:20865-20877 (2024).
"Dehydrated Biomimetic Membranes with Skinlike Structure and Function." ACS Applied Materials & Interfaces 16:20865-20877 (2024).
"A DNA turbine powered by a transmembrane potential across a nanopore." Nature Nanotechnology 19:338-344 (2024).
"A DNA turbine powered by a transmembrane potential across a nanopore." Nature Nanotechnology 19:338-344 (2024).
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