纳米孔
生物物理学
DNA
共价键
生物传感器
纳米技术
化学
分子动力学
纳米孔测序
分子
聚合酶
化学物理
材料科学
生物化学
生物
计算化学
DNA测序
有机化学
作者
Gang Hu,Guohao Xi,Han Yan,Zhuwei Gao,Ziqing Wu,Zuhong Lu,Jing Tu
摘要
Proteins have a small volume difference by the diversity of amino acids, which make protein detection and identification a great challenge. Solid-state nanopore as label-free biosensors has attracted attention with high sensitivity. In this work, we investigated the Taq DNA polymerase before and after combining it with a DNA substrate on a solid-state nanopore through molecular dynamics. In simulation, we analyzed the contribution source of nanopore current blockage. In addition to considering the traditional physical exclusion volume model, the non-covalent interaction between the protein molecules and the pore wall also showed to affect the current blockage in the nanopore. When choosing pores of comparable size to protein molecules, the two states of Taq DNA polymerase produce differentiated non-covalent interactions with the pore wall, which enhanced the amplitude difference in current blockage. As a result, the two DNA polymerases can be distinguished through the distinct current blockage. However, when applying additional pulling force or increasing the pore size of the nanopore, the differences between the current blockages are not significant enough to distinguish. The introduction of the non-covalent interaction makes it clear to understand the current blockage differences, which guide the mechanism between molecules with similar structures or volumes.
科研通智能强力驱动
Strongly Powered by AbleSci AI