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致癌 G12D 突变改变了 K-Ras 的局部构象和动力学。

Oncogenic G12D mutation alters local conformations and dynamics of K-Ras.

机构信息

Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, New York, New York, United States of America.

Icahn Institute for Data Science and Genomic Technology, New York, New York, United States of America.

出版信息

Sci Rep. 2019 Aug 13;9(1):11730. doi: 10.1038/s41598-019-48029-z.

Abstract

K-Ras is the most frequently mutated oncoprotein in human cancers, and G12D is its most prevalent mutation. To understand how G12D mutation impacts K-Ras function, we need to understand how it alters the regulation of its dynamics. Here, we present local changes in K-Ras structure, conformation and dynamics upon G12D mutation, from long-timescale Molecular Dynamics simulations of active (GTP-bound) and inactive (GDP-bound) forms of wild-type and mutant K-Ras, with an integrated investigation of atomistic-level changes, local conformational shifts and correlated residue motions. Our results reveal that the local changes in K-Ras are specific to bound nucleotide (GTP or GDP), and we provide a structural basis for this. Specifically, we show that G12D mutation causes a shift in the population of local conformational states of K-Ras, especially in Switch-II (SII) and α3-helix regions, in favor of a conformation that is associated with a catalytically impaired state through structural changes; it also causes SII motions to anti-correlate with other regions. This detailed picture of G12D mutation effects on the local dynamic characteristics of both active and inactive protein helps enhance our understanding of local K-Ras dynamics, and can inform studies on the development of direct inhibitors towards the treatment of K-Ras-driven cancers.

摘要

K-Ras 是人类癌症中最常发生突变的癌蛋白,而 G12D 是其最常见的突变。为了了解 G12D 突变如何影响 K-Ras 的功能,我们需要了解它如何改变其动力学的调节。在这里,我们通过对野生型和突变型 K-Ras 的活性(GTP 结合)和非活性(GDP 结合)形式的长时间尺度分子动力学模拟,展示了 G12D 突变后 K-Ras 结构、构象和动力学的局部变化,并进行了原子水平变化、局部构象变化和相关残基运动的综合研究。我们的结果表明,K-Ras 的局部变化是特定于结合核苷酸(GTP 或 GDP)的,我们为这一结果提供了结构基础。具体来说,我们表明,G12D 突变导致 K-Ras 的局部构象状态的种群发生变化,特别是在开关 II(SII)和α3-螺旋区域,有利于一种与催化受损状态相关的构象,通过结构变化;它还导致 SII 运动与其他区域反相关。这种 G12D 突变对活性和非活性蛋白局部动态特性的详细影响图有助于增强我们对局部 K-Ras 动力学的理解,并为开发针对 K-Ras 驱动的癌症的直接抑制剂的研究提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5081/6692342/d94f139ac26a/41598_2019_48029_Fig1_HTML.jpg

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