纳米孔
氮化硅
材料科学
氮化物
分离(统计)
硅
纳米技术
色谱法
化学
化学工程
光电子学
计算机科学
工程类
图层(电子)
机器学习
作者
Jinyang Zhu,Jilong Zhang,Pengyin Zhang,Hao Zhang,Song Wang
标识
DOI:10.1021/acs.jpcb.5c02453
摘要
Nanopore technology has emerged as a pivotal tool in biomolecular analysis owing to its high sensitivity, single-molecule resolution, and label-free detection capabilities. However, its application in peptide separation and purification has not been extensively explored. In this study, a novel peptide separation strategy using Si3N4 nanopores was proposed for the separation of three peptides─VEGF, FGF, and EGF─by integrating conventional molecular dynamics simulation, steered molecular dynamics, and umbrella sampling approach. Our simulation results demonstrate that the three peptides traverse Si3N4 nanopores with distinct energy barriers, indicating that the nanopores effectively differentiate between these similar peptides. This finding opens up possibilities for the separation of related peptides. Furthermore, we provide atomic-level insights into the underlying mechanisms responsible for the differences in translocation energy barriers among the peptides, thereby enriching the mechanistic understanding of peptide-nanopore interactions. Moreover, by analyzing the conformational dynamics of peptide translocation, we identify the crucial role of molecular sequence characteristics, such as length, polarity, hydrophobicity, and flexibility, in determining the peptide-nanopore interactions.
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