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用于通过分子动力学模拟进行柔性蛋白质-蛋白质对接的隐式溶剂模型

Implicit solvent models for flexible protein-protein docking by molecular dynamics simulation.

作者信息

Wang Ting, Wade Rebecca C

机构信息

European Media Laboratory, Heidelberg, Germany.

出版信息

Proteins. 2003 Jan 1;50(1):158-69. doi: 10.1002/prot.10248.

Abstract

The suitability of three implicit solvent models for flexible protein-protein docking by procedures using molecular dynamics simulation is investigated. The three models are (i) the generalized Born (GB) model implemented in the program AMBER6.0; (ii) a distance-dependent dielectric (DDD) model; and (iii) a surface area-dependent model that we have parameterized and call the NPSA model. This is a distance-dependent dielectric model modified by neutralizing the ionizable side-chains and adding a surface area-dependent solvation term. These solvent models were first tested in molecular dynamics simulations at 300 K of the native structures of barnase, barstar, segment B1 of protein G, and three WW domains. These protein structures display a range of secondary structure contents and stabilities. Then, to investigate the performance of the implicit solvent models in protein docking, molecular dynamics simulations of barnase/barstar complexation, as well as PIN1 WW domain/peptide complexation, were conducted, starting from separated unbound structures. The simulations show that the NPSA model has significant advantages over the DDD and GB models in maintaining the native structures of the proteins and providing more accurate docked complexes.

摘要

研究了三种隐式溶剂模型通过分子动力学模拟程序用于柔性蛋白质-蛋白质对接的适用性。这三种模型分别为:(i)程序AMBER6.0中实现的广义玻恩(GB)模型;(ii)距离依赖介电常数(DDD)模型;(iii)我们已参数化并称为NPSA模型的表面积依赖模型。这是一种通过中和可电离侧链并添加表面积依赖溶剂化项而修改的距离依赖介电常数模型。这些溶剂模型首先在300K下对巴纳酶、巴司他丁、蛋白G的B1片段和三个WW结构域的天然结构进行分子动力学模拟测试。这些蛋白质结构呈现出一系列二级结构含量和稳定性。然后,为了研究隐式溶剂模型在蛋白质对接中的性能,从分离的未结合结构开始,进行了巴纳酶/巴司他丁复合以及PIN1 WW结构域/肽复合的分子动力学模拟。模拟结果表明,在维持蛋白质天然结构和提供更准确的对接复合物方面,NPSA模型相对于DDD和GB模型具有显著优势。

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