纳米孔
DNA
纳米孔测序
离子键合
生物物理学
A-DNA
堆积
DNA测序
核苷酸
纳米技术
化学
材料科学
生物
生物化学
离子
基因
有机化学
作者
Swati Bhattacharya,Jejoong Yoo,Aleksei Aksimentiev
出处
期刊:ACS Nano
[American Chemical Society]
日期:2016-04-08
卷期号:10 (4): 4644-4651
被引量:54
标识
DOI:10.1021/acsnano.6b00940
摘要
Electric field-driven translocation of DNA strands through biological nanopores has been shown to produce blockades of the nanopore ionic current that depend on the nucleotide composition of the strands. Coupling a biological nanopore MspA to a DNA processing enzyme has made DNA sequencing via measurement of ionic current blockades possible. Nevertheless, the physical mechanism enabling the DNA sequence readout has remained undetermined. Here, we report the results of all-atom molecular dynamics simulations that elucidated the physical mechanism of ionic current blockades in the biological nanopore MspA. We find that the amount of water displaced from the nanopore by the DNA strand determines the nanopore ionic current, whereas the steric and base-stacking properties of the DNA nucleotides determine the amount of water displaced. Unexpectedly, we find the effective force on DNA in MspA to undergo large fluctuations, which may produce insertion errors in the DNA sequence readout.
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