Zhang Hao, Ni Duan, Fan Jigang, Li Minyu, Zhang Jian, Hua Chen, Nussinov Ruth, Lu Shaoyong
Department of Plastic and Reconstructive Surgery, Shanghai Ninth People's Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200011, China.
The Charles Perkins Centre, University of Sydney, Sydney, New South Wales 2006, Australia.
J Chem Inf Model. 2022 Sep 12;62(17):4222-4231. doi: 10.1021/acs.jcim.2c00591. Epub 2022 Aug 22.
K-Ras4B, the most frequently mutated Ras isoform in human tumors, plays a vital part in cell growth, differentiation, and survival. Its tail, the C-terminal hypervariable region (HVR), is involved in anchoring K-Ras4B at the cellular plasma membrane and in isoform-specific protein-protein interactions and signaling. In the inactive guanosine diphosphate-bound state, the intrinsically disordered HVR interacts with the catalytic domain at the effector-binding region, rendering K-Ras4B in its autoinhibited state. Activation releases the HVR from the catalytic domain, with its ensemble favoring an ordered α-helical structure. The large-scale conformational transition of the HVR from the intrinsically disordered to the ordered conformation remains poorly understood. Here, we deploy a computational scheme that integrates a transition path-generation algorithm, extensive molecular dynamics simulation, and Markov state model analysis to investigate the conformational landscape of the HVR transition pathway. Our findings reveal a stepwise pathway for the HVR transition and uncover several key conformational substates along the transition pathway. Importantly, key interactions between the HVR and the catalytic domain are unraveled, highlighting the pathogenesis of K-Ras4B mild mutations in several congenital developmental anomaly syndromes. Together, these findings provide a deeper understanding of the HVR transition mechanism and the regulation of K-Ras4B activity at an atomic level.
K-Ras4B是人类肿瘤中最常发生突变的Ras亚型,在细胞生长、分化和存活中起着至关重要的作用。其尾部,即C末端高变区(HVR),参与将K-Ras4B锚定在细胞质膜上,并参与亚型特异性的蛋白质-蛋白质相互作用和信号传导。在无活性的鸟苷二磷酸结合状态下,内在无序的HVR在效应器结合区域与催化结构域相互作用,使K-Ras4B处于自抑制状态。激活使HVR从催化结构域释放,其整体倾向于有序的α螺旋结构。HVR从内在无序到有序构象的大规模构象转变仍知之甚少。在这里,我们采用了一种计算方案,该方案整合了过渡路径生成算法、广泛的分子动力学模拟和马尔可夫状态模型分析,以研究HVR过渡途径的构象景观。我们的研究结果揭示了HVR过渡的逐步途径,并揭示了沿过渡途径的几个关键构象亚状态。重要的是,揭示了HVR与催化结构域之间的关键相互作用,突出了K-Ras4B轻度突变在几种先天性发育异常综合征中的发病机制。总之,这些发现为HVR过渡机制以及K-Ras4B活性在原子水平上的调控提供了更深入的理解。