Department of Life Sciences, Presidency University, Kolkata, India.
Department of Life Sciences, Presidency University, Kolkata, India.
J Mol Graph Model. 2021 Jan;102:107778. doi: 10.1016/j.jmgm.2020.107778. Epub 2020 Oct 16.
COVID-19 caused by SARS-CoV-2 have become a global pandemic with serious rate of fatalities. SARS-CoV and MERS-CoV have also caused serious outbreak previously but the intensity was much lower than the ongoing SARS-CoV-2. The main infectivity factor of all the three viruses is the spike glycoprotein. In this study we have examined the intrinsic dynamics of the prefusion, lying state of trimeric S protein of these viruses through Normal Mode Analysis using Anisotropic Network Model. The dynamic modes of the S proteins of the aforementioned viruses were compared by root mean square inner product (RMSIP), spectral overlap and cosine correlation matrix. S proteins show homogenous correlated or anticorrelated motions among their domains but direction of C atom among the spike proteins show less similarity. SARS-CoV-2 spike shows high vertically upward motion of the receptor binding motif implying its propensity for binding with the receptor even in the lying state. MERS-CoV spike shows unique dynamical motion compared to the other two S protein indicated by low RMSIP, spectral overlap and cosine correlation value. This study will guide in developing common potential inhibitor molecules against closed state of spike protein of these viruses to prevent conformational switching from lying to standing state.
由 SARS-CoV-2 引起的 COVID-19 已成为一种全球性大流行疾病,死亡率很高。SARS-CoV 和 MERS-CoV 此前也曾引发严重疫情,但强度远低于目前的 SARS-CoV-2。这三种病毒的主要感染因子都是刺突糖蛋白。在这项研究中,我们通过各向异性网络模型的非模态分析,检测了这些病毒三聚体 S 蛋白预融合、潜伏状态的固有动力学。通过均方根内积 (RMSIP)、谱重叠和余弦相关矩阵比较了上述病毒 S 蛋白的动态模式。S 蛋白的各个结构域之间表现出均匀的相关或反相关运动,但刺突蛋白中 C 原子的方向则不太相似。SARS-CoV-2 的刺突表现出受体结合基序的强烈向上运动,表明其即使在潜伏状态下也具有与受体结合的倾向。与其他两种 S 蛋白相比,MERS-CoV 的刺突表现出独特的动力学运动,这表现在 RMSIP、谱重叠和余弦相关值较低。这项研究将有助于开发针对这些病毒的封闭状态刺突蛋白的通用潜在抑制剂分子,以防止构象从潜伏状态向站立状态转变。