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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Homology modeling of human CCR5 and analysis of its binding properties through molecular docking and molecular dynamics simulation.
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Homology modeling of human CCR5 and analysis of its binding properties through molecular docking and molecular dynamics simulation.

机译:人类CCR5的同源性建模,并通过分子对接和分子动力学模拟分析其结合特性。

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摘要

In this study, homology modeling, molecular docking and molecular dynamics simulation were performed to explore structural features and binding mechanism of some inhibitors of chemokine receptor type 5 (CCR5), and to construct a model for designing new CCR5 inhibitors for preventing HIV attachment to the host cell. A homology modeling procedure was employed to construct a 3D model of CCR5. For this procedure, the X-ray crystal structure of bovine rhodopsin (1F88A) at 2.80A resolution was used as template. After inserting the constructed model into a hydrated lipid bilayer, a 20ns molecular dynamics (MD) simulation was performed on the whole system. After reaching the equilibrium, twenty-four CCR5 inhibitors were docked in the active site of the obtained model. The binding models of the investigated antagonists indicate the mechanism of binding of the studied compounds to the CCR5 obviously. Moreover, 3D pictures of inhibitor-protein complex provided precious data regarding the binding orientation of each antagonist into the active site of this protein. One additional 20 ns MD simulation was performed on the initial structure of the CCR5-ligand 21 complex, resulted from the previous docking calculations, embedded in a hydrated POPE bilayer to explore the effects of the presence of lipid bilayer in the vicinity of CCR5-ligand complex. This article is part of a Special Issue entitled Protein translocation across or insertion into membranes.
机译:在这项研究中,进行了同源性建模,分子对接和分子动力学模拟,以探索一些5型趋化因子受体(CCR5)抑制剂的结构特征和结合机理,并构建一个模型来设计新的CCR5抑制剂,以防止HIV附着在CCR5上。宿主细胞。使用同源性建模程序来构建CCR5的3D模型。在此过程中,以2.80A分辨率的牛视紫红质(1F88A)的X射线晶体结构作为模板。将构建的模型插入水合脂质双层后,对整个系统进行20ns分子动力学(MD)模拟。达到平衡后,将二十四种CCR5抑制剂停靠在获得的模型的活性位点。研究的拮抗剂的结合模型明显表明了研究化合物与CCR5的结合机理。此外,抑制剂-蛋白质复合物的3D图片提供了有关每种拮抗剂进入该蛋白质活性位点的结合方向的宝贵数据。根据先前的对接计算结果,对CCR5-配体21复合物的初始结构进行了另外的20 ns MD模拟,将其嵌入水合POPE双层中,以探索CCR5-配体附近脂质双层存在的影响复杂。本文是《蛋白质跨膜或插入膜易位》杂志特刊的一部分。

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