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通过分子动力学研究探讨 D61G 突变对 SHP2 产生功能活性的影响。

Exploring the effect of D61G mutation on SHP2 cause gain of function activity by a molecular dynamics study.

机构信息

a Tianjin Key Laboratory on Technologies Enabling Development of Clinical Therapeutics and Diagnostics (Theranostics), School of Pharmacy , Tianjin Medical University , Tianjin , China.

出版信息

J Biomol Struct Dyn. 2018 Nov;36(14):3856-3868. doi: 10.1080/07391102.2017.1402709. Epub 2017 Nov 24.

Abstract

Noonan syndrome (NS) is a common autosomal dominant congenital disorder which could cause the congenital cardiopathy and cancer predisposition. Previous studies reported that the knock-in mouse models of the mutant D61G of SHP2 exhibited the major features of NS, which demonstrated that the mutation D61G of SHP2 could cause NS. To explore the effect of D61G mutation on SHP2 and explain the high activity of the mutant, molecular dynamic simulations were performed on wild type (WT) of SHP2 and the mutated SHP2-D61G, respectively. The principal component analysis and dynamic cross-correlation mapping, associated with secondary structure, showed that the D61G mutation affected the motions of two regions (residues Asn 58-Thr 59 and Val 460-His 462) in SHP2 from β to turn. Moreover, the residue interaction networks analysis, the hydrogen bond occupancy analysis and the binding free energies were calculated to gain detailed insight into the influence of the mutant D61G on the two regions, revealing that the major differences between SHP2-WT and SHP2-D61G were the different interactions between Gly 61 and Gly 462, Gly 61 and Ala 461, Gln 506 and Ile 463, Gly 61 and Asn 58, Ile 463 and Thr 466, Gly 462 and Cys 459. Consequently, our findings here may provide knowledge to understand the increased activity of SHP2 caused by the mutant D61G.

摘要

努南综合征(Noonan syndrome,NS)是一种常见的常染色体显性遗传病,可导致先天性心脏病和癌症易感性。先前的研究报告称,SHP2 突变体 D61G 的基因敲入小鼠模型表现出 NS 的主要特征,这表明 SHP2 的突变 D61G 可导致 NS。为了探究 D61G 突变对 SHP2 的影响并解释其高活性,我们分别对野生型(WT)SHP2 和突变型 SHP2-D61G 进行了分子动力学模拟。主成分分析和动态互相关映射,与二级结构相关,表明 D61G 突变影响了 SHP2 中两个区域(残基 Asn 58-Thr 59 和 Val 460-His 462)的运动,从β到转角。此外,残基相互作用网络分析、氢键占有率分析和结合自由能计算,深入了解了突变体 D61G 对这两个区域的影响,揭示了 SHP2-WT 和 SHP2-D61G 之间的主要差异在于 Gly 61 和 Gly 462、Gly 61 和 Ala 461、Gln 506 和 Ile 463、Gly 61 和 Asn 58、Ile 463 和 Thr 466、Gly 462 和 Cys 459 之间的不同相互作用。因此,我们的研究结果可能为理解突变体 D61G 引起的 SHP2 活性增加提供了知识。

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