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研究 NSP3 和 p130Cas 突变体的结合现象及其对细胞信号转导的影响。

Investigation of binding phenomenon of NSP3 and p130Cas mutants and their effect on cell signalling.

机构信息

Bioinformatics Division, School of Bio Sciences and Technology, Vellore Institute of Technology University, Vellore, 632014, Tamil Nadu, India.

出版信息

Cell Biochem Biophys. 2013 Nov;67(2):623-33. doi: 10.1007/s12013-013-9551-6.

Abstract

Members of the novel SH2-containing protein (NSP3) and Crk-associated substrate (p130Cas) protein families form a multi-domain signalling platforms that mediate cell signalling process. We analysed the damaging consequences of three mutations, each from NSP3 (NSP3(L469R), NSP3(L623E), NSP3(R627E)) and p130Cas (p130Cas(F794R), p130Cas(L787E), p130Cas(D797R)) protein with respect to their native biological partners. Mutations depicted notable loss in interaction affinity towards their corresponding biological partners. NSP3(L469R) and p130Cas(D797R) mutations were predicted as most prominent in docking analysis. Molecular dynamics (MD) studies were conducted to evaluate structural consequences of most prominent mutation in NSP3 and p130Cas obtained from the docking analysis. MD analysis confirmed that mutation in NSP3(L469R) and p130Cas(D797R) showed significant structural deviation, changes in conformations and increased flexibility, which in turn affected the binding affinity with their biological partners. Moreover, the root mean square fluctuation has indicated a rise in fluctuation of residues involved in moderate interaction acquired between the NSP3 and p130Cas. It has significantly affected the binding interaction in mutant complexes. The results obtained in this work present a detailed overview of molecular mechanisms involved in the loss of cell signalling associated with NSP3 and p130Cas protein.

摘要

新型 SH2 结构域包含蛋白(NSP3)和 Crk 相关底物(p130Cas)蛋白家族成员形成了一个多结构域信号平台,介导细胞信号转导过程。我们分析了三个突变的破坏性后果,每个突变分别来自 NSP3(NSP3[L469R]、NSP3[L623E]、NSP3[R627E])和 p130Cas(p130Cas[F794R]、p130Cas[L787E]、p130Cas[D797R])蛋白,涉及它们的天然生物伴侣。突变明显降低了与相应生物伴侣的相互作用亲和力。NSP3[L469R]和 p130Cas[D797R]突变在对接分析中被预测为最显著的。进行分子动力学(MD)研究以评估从对接分析中获得的 NSP3 和 p130Cas 中最显著突变的结构后果。MD 分析证实,NSP3[L469R]和 p130Cas[D797R]中的突变显示出显著的结构偏差、构象变化和增加的灵活性,这反过来又影响了与它们的生物伴侣的结合亲和力。此外,均方根波动表明,NSP3 和 p130Cas 之间获得的中等相互作用涉及的残基波动增加。它显著影响了突变体复合物中的结合相互作用。这项工作的结果提供了与 NSP3 和 p130Cas 蛋白相关的细胞信号丢失所涉及的分子机制的详细概述。

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