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基因突变对 GDP 和 GTP 结合态 K-Ras 开关构象转变的影响:基于多重复制的高斯加速分子动力学和自由能分析的研究。

Mutation-Induced Impacts on the Switch Transformations of the GDP- and GTP-Bound K-Ras: Insights from Multiple Replica Gaussian Accelerated Molecular Dynamics and Free Energy Analysis.

机构信息

School of Science, Shandong Jiaotong University, Jinan 250357, China.

School of Physics and Electronics, Shandong Normal University, Jinan, 250358, China.

出版信息

J Chem Inf Model. 2021 Apr 26;61(4):1954-1969. doi: 10.1021/acs.jcim.0c01470. Epub 2021 Mar 19.

Abstract

Mutations yield significant effect on the structural flexibility of two switch domains, SW1 and SW2, in K-Ras, which is considered as an important target of anticancer drug design. To unveil a molecular mechanism with regard to mutation-mediated tuning on the activity of K-Ras, multiple replica Gaussian accelerated molecular dynamics (MR-GaMD) simulations followed by analysis of free energy landscapes (FELs) are performed on the GDP- and GTP-bound wild-type (WT), G12V, and D33E K-Ras. The results suggest that G12V and D33E not only evidently change the flexibility of SW1 and SW2 but also greatly affect correlated motions of SW1 and SW2 separately relative to the P-loop and SW1, which exerts a certain tuning on the activity of K-Ras. The information stemming from the analyses of FELs reveals that the conformations of SW1 and SW2 are in high disorders in the GDP- and GTP-associated WT and mutated K-Ras, possibly producing significant effect on binding of guanine nucleotide exchange factors or effectors to K-Ras. The interaction networks of GDP and GTP with K-Ras are identified and the results uncover that the instability in hydrogen-bonding interactions of SW1 with GDP and GTP is mostly responsible for conformational disorder of SW1 and SW2 as well as tunes the activity of oncogenic K-Ras.

摘要

突变对 K-Ras 中两个开关结构域(SW1 和 SW2)的结构灵活性产生显著影响,这被认为是抗癌药物设计的重要靶点。为了揭示突变对 K-Ras 活性调节的分子机制,我们对 GDP 和 GTP 结合的野生型(WT)、G12V 和 D33E K-Ras 进行了多次复制高斯加速分子动力学(MR-GaMD)模拟,随后对自由能景观(FELs)进行了分析。结果表明,G12V 和 D33E 不仅明显改变了 SW1 和 SW2 的灵活性,而且还分别极大地影响了 SW1 和 SW2 与 P 环和 SW1 的相关性运动,从而对 K-Ras 的活性产生了一定的调节作用。FELs 分析结果表明,SW1 和 SW2 的构象在 GDP 和 GTP 相关的 WT 和突变 K-Ras 中处于高度无序状态,可能对鸟嘌呤核苷酸交换因子或效应物与 K-Ras 的结合产生显著影响。我们还确定了 GDP 和 GTP 与 K-Ras 的相互作用网络,结果表明 SW1 与 GDP 和 GTP 之间氢键相互作用的不稳定性主要导致了 SW1 和 SW2 的构象无序,并调节了致癌性 K-Ras 的活性。

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