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RAS亚型在GDP结合态和GTP结合态下的差异动力学。

Differential dynamics of RAS isoforms in GDP- and GTP-bound states.

作者信息

Kapoor Abhijeet, Travesset Alex

机构信息

Department of Physics and Astronomy, Iowa State University, Ames, Iowa, 50011.

出版信息

Proteins. 2015 Jun;83(6):1091-106. doi: 10.1002/prot.24805. Epub 2015 Apr 22.

Abstract

RAS subfamily proteins regulates cell growth promoting signaling processes by cycling between active (GTP-bound) and inactive (GDP-bound) states. Different RAS isoforms, though structurally similar, exhibit functional specificity and are associated with different types of cancers and developmental disorders. Understanding the dynamical differences between the isoforms is crucial for the design of inhibitors that can selectively target a particular malfunctioning isoform. In this study, we provide a comprehensive comparison of the dynamics of all the three RAS isoforms (HRAS, KRAS, and NRAS) using extensive molecular dynamics simulations in both the GDP- (total of 3.06 μs) and GTP-bound (total of 2.4 μs) states. We observed significant differences in the dynamics of the isoforms, which rather interestingly, varied depending on the type of the nucleotide bound and the simulation temperature. Both SwitchI (Residues 25-40) and SwitchII (Residues 59-75) differ significantly in their flexibility in the three isoforms. Furthermore, Principal Component Analysis showed that there are differences in the conformational space sampled by the GTP-bound RAS isoforms. We also identified a previously unreported pocket, which opens transiently during MD simulations, and can be targeted to regulate nucleotide exchange reaction or possibly interfere with membrane localization. Further, we present the first simulation study showing GDP destabilization in the wild-type RAS protein. The destabilization of GDP/GTP occurred only in 1/50 simulations, emphasizing the need of guanine nucleotide exchange factors (GEFs) to accelerate such an extremely unfavorable process. This observation along with the other results presented in this article further support our previously hypothesized mechanism of GEF-assisted nucleotide exchange.

摘要

RAS亚家族蛋白通过在活性(结合GTP)和非活性(结合GDP)状态之间循环来调节促进细胞生长的信号传导过程。不同的RAS异构体虽然结构相似,但具有功能特异性,并与不同类型的癌症和发育障碍相关。了解这些异构体之间的动力学差异对于设计能够选择性靶向特定功能异常异构体的抑制剂至关重要。在本研究中,我们使用广泛的分子动力学模拟,对GDP结合状态(总计3.06微秒)和GTP结合状态(总计2.4微秒)下的所有三种RAS异构体(HRAS、KRAS和NRAS)的动力学进行了全面比较。我们观察到异构体动力学存在显著差异,有趣的是,这种差异取决于结合的核苷酸类型和模拟温度。SwitchI(第25-40位残基)和SwitchII(第59-75位残基)在三种异构体中的灵活性存在显著差异。此外,主成分分析表明,GTP结合的RAS异构体采样的构象空间存在差异。我们还发现了一个以前未报道的口袋,它在分子动力学模拟过程中短暂打开,可以作为靶点来调节核苷酸交换反应或可能干扰膜定位。此外,我们展示了第一项模拟研究,该研究表明野生型RAS蛋白中GDP的不稳定。GDP/GTP的不稳定仅在1/50的模拟中发生,这强调了鸟嘌呤核苷酸交换因子(GEF)加速这种极其不利过程的必要性。这一观察结果以及本文中呈现的其他结果进一步支持了我们之前假设的GEF辅助核苷酸交换机制。

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