纳米孔
折叠(DSP实现)
蛋白质折叠
化学物理
离子键合
化学
分子动力学
分子
毫秒
纳米技术
结晶学
生物物理学
离子
材料科学
计算化学
物理
生物
生物化学
工程类
有机化学
电气工程
天文
作者
Wei Si,Aleksei Aksimentiev
出处
期刊:ACS Nano
[American Chemical Society]
日期:2017-07-11
卷期号:11 (7): 7091-7100
被引量:132
标识
DOI:10.1021/acsnano.7b02718
摘要
Single-molecule studies of protein folding hold keys to unveiling protein folding pathways and elusive intermediate folding states—attractive pharmaceutical targets. Although conventional single-molecule approaches can detect folding intermediates, they presently lack throughput and require elaborate labeling. Here, we theoretically show that measurements of ionic current through a nanopore containing a protein can report on the protein's folding state. Our all-atom molecular dynamics (MD) simulations show that the unfolding of a protein lowers the nanopore ionic current, an effect that originates from the reduction of ion mobility in proximity to a protein. Using a theoretical model, we show that the average change in ionic current produced by a folding–unfolding transition is detectable despite the orientational and conformational heterogeneity of the folded and unfolded states. By analyzing millisecond-long all-atom MD simulations of multiple protein transitions, we show that a nanopore ionic current recording can detect folding–unfolding transitions in real time and report on the structure of folding intermediates.
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