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正常和致癌性Ras-p21与SOS核苷酸交换蛋白复合物的分子动力学平均结构比较,其中包含三个晶体学未定义结构域的计算构象,表明这些结构域在Ras信号传导中可能发挥作用。

Comparison of molecular dynamics averaged structures for complexes of normal and oncogenic ras-p21 with SOS nucleotide exchange protein, containing computed conformations for three crystallographically undefined domains, suggests a potential role of these domains in ras signaling.

作者信息

Duncan Thomas, Chen James M, Friedman Fred K, Hyde Mark, Chie Lyndon, Pincus Matthew R

机构信息

Department of Biochemistry, SUNY Upstate Medical Center, 750 East Adams Street, Syracuse, NY 13210, USA.

出版信息

Protein J. 2004 Apr;23(3):217-28. doi: 10.1023/b:jopc.0000026417.72621.1f.

Abstract

ras-p21 protein binds to the son-of-sevenless (SOS) guanine nucleotide-exchange promoter that allows it to exchange GDP for GTP. Previously, we performed molecular dynamics calculations on oncogenic (Val 12-) and wild-type ras-p21 bound to SOS. By superimposing the average structures of these two complexes, we identified four domains (residues 631-641, 676-691, 718-729, and 994-1004) in SOS that change conformation and were candidates for being effector domains. These calculations were performed in the absence of three crystallographically undefined loops (i.e., residues 591-596, 654-675, and 742-751). We have now modeled these loops into the SOS structure and have re-performed the dynamics calculations. We find that all three loop domains undergo large changes in conformation that involve mostly changes in their positioning and not their individual conformations. We have also identified another potential effector domain (i.e., residues 980-989). Overall, our current results suggest that SOS interactions with oncogenic ras-p21 may enhance ras-p21 mitogenic signaling through prolonging its activation by maintaining its binding to GTP and by allowing its effector domains to interact with intracellular targets.

摘要

Ras-p21蛋白与七号染色体失活蛋白(SOS)鸟嘌呤核苷酸交换启动子结合,使其能够将GDP交换为GTP。此前,我们对与SOS结合的致癌性(Val 12-)和野生型Ras-p21进行了分子动力学计算。通过叠加这两种复合物的平均结构,我们在SOS中确定了四个结构域(残基631-641、676-691、718-729和994-1004),这些结构域发生了构象变化,可能是效应结构域。这些计算是在没有三个晶体学上未确定的环(即残基591-596、654-675和742-751)的情况下进行的。我们现在已将这些环构建到SOS结构中,并重新进行了动力学计算。我们发现,所有三个环结构域的构象都发生了很大变化,主要涉及它们位置的改变,而不是它们各自的构象。我们还确定了另一个潜在的效应结构域(即残基980-989)。总体而言,我们目前的结果表明,SOS与致癌性Ras-p21的相互作用可能通过维持其与GTP的结合并允许其效应结构域与细胞内靶点相互作用来延长其激活,从而增强Ras-p21的促有丝分裂信号传导。

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