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首页> 外文期刊>Chemical biology and drug design >Understanding conformational diversity of heat shock protein 90 (HSP90) and binding features of inhibitors to HSP90 via molecular dynamics simulations
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Understanding conformational diversity of heat shock protein 90 (HSP90) and binding features of inhibitors to HSP90 via molecular dynamics simulations

机译:了解热休克蛋白90(HSP90)的构象多样性,并通过分子动力学模拟对Hsp90的抑制剂的结合特征

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Heat shock protein 90 (HSP90) is a promising target for treatment of cancer, and inhibitor bindings can generate efficient suppression on tumor in multiple ways. In this work, 140-ns molecular dynamics simulations were performed on six systems. Principal component analysis was subsequently carried out to explore the conformational diversity of HSP90. The results suggest that inhibitor bindings induce large conformational changes of HSP90, which tends to enlarge the volume of the binding pocket to facilitate the entrance of inhibitors. Hierarchical clustering analyses, the calculation of the energy contribution of each atom, and the analyses of hydrogen-bonding interactions were performed. The results indicate that 20 residues in group A of the hierarchical tree are responsible for major contributions, and van der Waals interactions as well as hydrogen-bonding interactions between important residues in HSP90 and key regions of inhibitors are the main force for promoting inhibitor bindings. We expect that this work can provide useful theoretical information for development of efficient inhibitors targeting HSP90.
机译:热休克蛋白90(HSP90)是治疗癌症的有希望的靶标,抑制剂结合可以多种方式产生有效的肿瘤抑制。在这项工作中,在六个系统上进行140-ns分子动力学模拟。随后进行了主成分分析以探索HSP90的构象多样性。结果表明,抑制剂结合诱导Hsp90的大构象变化,这倾向于扩大粘合口袋的体积,以便于抑制剂的入口。分层聚类分析,进行每个原子的能量贡献的计算,以及氢键相互作用的分析。结果表明,分层树的A组中的20个残基对主要贡献负责,并且Van der Wa种相互作用以及Hsp90中的重要残留与抑制剂的关键区域之间的氢键相互作用是促进抑制剂结合的主要力。我们预计这项工作可以为靶向HSP90的有效抑制剂的发展提供有用的理论信息。

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