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构象特异性残基对 GTP 结合 HRas、KRas 和 NRas 的影响机制。

Mechanisms of isoform-specific residue influence on GTP-bound HRas, KRas, and NRas.

机构信息

Department of Chemistry and Chemical Biology, Northeastern University, Boston, Massachusetts.

Department of Electrical and Computing Engineering, Northeastern University, Boston, Massachusetts.

出版信息

Biophys J. 2022 Oct 4;121(19):3616-3629. doi: 10.1016/j.bpj.2022.07.005. Epub 2022 Jul 6.

Abstract

HRas, KRas, and NRas are GTPases with a common set of effectors that control many cell-signaling pathways, including proliferation through Raf kinase. Their G-domains are nearly identical in sequence, with a few isoform-specific residues that have an effect on dynamics and biochemical properties. Here, we use accelerated molecular dynamics (aMD) simulations consistent with solution x-ray scattering experiments to elucidate mechanisms through which isoform-specific residues associated with each Ras isoform affects functionally important regions connected to the active site. HRas-specific residues cluster in loop 8 to stabilize the nucleotide-binding pocket, while NRas-specific residues on helix 3 directly affect the conformations of switch I and switch II. KRas, the most globally flexible of the isoforms, shows greatest fluctuations in the switch regions enhanced by a KRas-specific residue in loop 7 and a highly dynamic loop 8 region. The analysis of isoform-specific residue effects on Ras proteins is supported by NMR experiments and is consistent with previously published biochemical data.

摘要

HRas、KRas 和 NRas 是 GTPases,它们具有一套共同的效应物,可控制许多细胞信号通路,包括通过 Raf 激酶进行的增殖。它们的 G 结构域在序列上几乎完全相同,只有少数同工型特异性残基对动力学和生化特性有影响。在这里,我们使用与溶液 X 射线散射实验一致的加速分子动力学 (aMD) 模拟来阐明同工型特异性残基与每个 Ras 同工型相关联的机制,这些残基影响与活性位点相连的功能重要区域。HRas 特异性残基聚集在环 8 中以稳定核苷酸结合口袋,而 NRas 特异性残基位于螺旋 3 上,直接影响开关 I 和开关 II 的构象。KRas 是同工型中最具全局灵活性的,其开关区域的波动最大,这是由环 7 中的 KRas 特异性残基和高度动态的环 8 区域增强的。对 Ras 蛋白的同工型特异性残基效应的分析得到了 NMR 实验的支持,并与先前发表的生化数据一致。

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