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基于423位点突变对丙型肝炎病毒NS5B对PF-00868554耐药机制的理解:一项计算研究

Understanding the drug resistance mechanism of hepatitis C virus NS5B to PF-00868554 due to mutations of the 423 site: a computational study.

作者信息

Jiao Pingzu, Xue Weiwei, Shen Yulin, Jin Nengzhi, Liu Huanxiang

机构信息

School of Pharmacy, Lanzhou University, Lanzhou 730000, China.

出版信息

Mol Biosyst. 2014 Apr;10(4):767-77. doi: 10.1039/c3mb70498j. Epub 2014 Jan 23.

Abstract

NS5B, a hepatitis C virus (HCV) RNA-dependent RNA polymerase (RdRp) that plays a key role in viral replication, is an important target in the discovery of antiviral agents. PF-00868554 is a potent non-nucleoside inhibitor (NNI) that binds to the Thumb II allosteric pocket of NS5B polymerase and has shown significant promise in phase II clinical trials. Unfortunately, several PF-00868554 resistant mutants have been identified. M423 variants were the most common NS5B mutations that occurred after PF-00868554 monotherapy. In this study, we used molecular dynamics (MD) simulations, binding free energy calculations and free energy decomposition to explore the drug resistance mechanism of HCV to PF-00868554 resulting from three representative mutations (M423T/V/I) in NS5B polymerase. Free energy decomposition analysis reveals that the loss of binding affinity mainly comes from the reduction of both van der Waals (ΔE(vdw)) and electrostatic interaction contributions in the gas phase (ΔE(ele)). Further structural analysis indicates that the location of PF-00868554 and the binding mode changed due to mutation of the residue at the 423 site of NS5B polymerase from methionine to threonine, isoleucine or valine, which further resulted in the loss of binding ability of PF-00868554 to NS5B polymerase. The obtained computational results will have important value for the rational design of novel non-nucleoside inhibitors targeting HCV NS5B polymerase.

摘要

NS5B是一种丙型肝炎病毒(HCV)RNA依赖性RNA聚合酶(RdRp),在病毒复制中起关键作用,是抗病毒药物发现中的一个重要靶点。PF-00868554是一种强效非核苷抑制剂(NNI),它与NS5B聚合酶的拇指II别构口袋结合,并且在II期临床试验中显示出显著前景。不幸的是,已经鉴定出几种对PF-00868554耐药的突变体。M423变体是PF-00868554单药治疗后出现的最常见的NS5B突变。在本研究中,我们使用分子动力学(MD)模拟、结合自由能计算和自由能分解来探究由NS5B聚合酶中的三个代表性突变(M423T/V/I)导致的HCV对PF-00868554的耐药机制。自由能分解分析表明,结合亲和力的丧失主要来自气相中范德华力(ΔE(vdw))和静电相互作用贡献(ΔE(ele))的降低。进一步的结构分析表明,由于NS5B聚合酶423位点的残基从甲硫氨酸突变为苏氨酸、异亮氨酸或缬氨酸,PF-00868554的位置和结合模式发生了变化,这进一步导致PF-00868554与NS5B聚合酶结合能力的丧失。所获得的计算结果对于合理设计靶向HCV NS5B聚合酶的新型非核苷抑制剂具有重要价值。

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