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Exploring the binding mechanism of Heteroaryldihydropyrimidines and Hepatitis B Virus capsid combined 3D-QSAR and molecular dynamics

机译:探索杂芳基三嘧啶和乙型肝炎病毒衣壳组合3D-QSAR和分子动力学的结合机制

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The non-nucleoside drugs have been developed to treat HBV infection owing to their increased efficacy and lesser side effects, in which heteroaryldihydropyrimidines (HAPs) have been identified as effective inhibitors of HBV capsid. In this paper, the binding mechanism of HAPs targeting on HBV capsid protein was explored through three-dimensional quantitative structure-activity relationship, molecular dynamics and binding free energy decompositions. The obtained models of comparative molecular field analysis and comparative molecular similarity indices analysis enable the sufficient interpretation of structure-activity relationship of HAPs-HBV. Tile binding free energy analysis correlates with the experimental data. The computational results disclose that the non-polar contribution is the major driving force and Y132A mutation enhances the binding affinity for inhibitor 2 bound to HBV. The hydrogen bond interactions between the inhibitors and Trp102 help to stabilize the conformation of HAPs-HBV. The study provides insight into the binding mechanism of HAPs-HBV and would be useful for the rational design and modification of new lead compounds of HAP drugs. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于其疗效增加和较小的副作用,已经开发了非核苷药物以治疗HBV感染,其中杂芳基二吡啶胺(HAPS)已被鉴定为HBV衣壳的有效抑制剂。在本文中,通过三维定量结构 - 活性关系,分子动力学和无结合能量分解来探讨靶向HBV衣壳蛋白对HBV衣壳蛋白的结合机制。所获得的比较分子场分析模型和比较分子相似性指数分析能够充分地解释HAPS-HBV的结构活性关系。瓷砖绑定自由能量分析与实验数据相关。计算结果公开了非极性贡献是主要的驱动力,并且Y132A突变增强了与HBV结合的抑制剂2的结合亲和力。抑制剂和TRP102之间的氢键相互作用有助于稳定HAPS-HBV的构象。该研究提供了洞察HAPS-HBV的结合机制,可用于合理的设计和改性Hap药物的新铅化合物。 (c)2016年Elsevier B.v.保留所有权利。

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