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用高斯加速分子动力学模拟研究 P 环突变对 KRAS 构象变化的影响。

Impacts of Mutations in the P-Loop on Conformational Alterations of KRAS Investigated with Gaussian Accelerated Molecular Dynamics Simulations.

机构信息

School of Science, Shandong Jianzhu University, Jinan 250101, China.

Shandong Key Laboratory of Biophysics, Institute of Biophysics, Dezhou University, Dezhou 253023, China.

出版信息

Molecules. 2023 Mar 23;28(7):2886. doi: 10.3390/molecules28072886.

Abstract

G12 mutations heavily affect conformational transformation and activity of KRAS. In this study, Gaussian accelerated molecular dynamics (GaMD) simulations were performed on the GDP-bound wild-type (WT), G12A, G12D, and G12R KRAS to probe mutation-mediated impacts on conformational alterations of KRAS. The results indicate that three G12 mutations obviously affect the structural flexibility and internal dynamics of the switch domains. The analyses of the free energy landscapes (FELs) suggest that three G12 mutations induce more conformational states of KRAS and lead to more disordered switch domains. The principal component analysis shows that three G12 mutations change concerted motions and dynamics behavior of the switch domains. The switch domains mostly overlap with the binding region of KRAS to its effectors. Thus, the high disorder states and concerted motion changes of the switch domains induced by G12 mutations affect the activity of KRAS. The analysis of interaction network of GDP with KRAS signifies that the instability in the interactions of GDP and magnesium ion with the switch domain SW1 drives the high disordered state of the switch domains. This work is expected to provide theoretical aids for understanding the function of KRAS.

摘要

G12 突变强烈影响 KRAS 的构象转变和活性。在这项研究中,对 GDP 结合的野生型(WT)、G12A、G12D 和 G12R KRAS 进行了高斯加速分子动力学(GaMD)模拟,以探究突变对 KRAS 构象变化的介导影响。结果表明,三种 G12 突变明显影响了开关结构域的结构柔韧性和内部动力学。自由能景观(FEL)的分析表明,三种 G12 突变诱导了更多的 KRAS 构象状态,并导致了更无序的开关结构域。主成分分析表明,三种 G12 突变改变了开关结构域的协同运动和动力学行为。开关结构域与 KRAS 与其效应物的结合区域大部分重叠。因此,G12 突变诱导的开关结构域的高无序状态和协同运动变化会影响 KRAS 的活性。GDP 与 KRAS 的相互作用网络分析表明,GDP 和镁离子与开关结构域 SW1 的相互作用的不稳定性导致了开关结构域的高无序状态。这项工作有望为理解 KRAS 的功能提供理论帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e38/10095679/7229b2540fc0/molecules-28-02886-g001.jpg

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