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Intra- and intermolecular atomic-scale interactions in the receptor binding domain of SARS-CoV-2 spike protein: implication for ACE2 receptor binding

机译:SARS-COV-2穗蛋白受体结合结构域的血管和分子间原子标度相互作用:ACE2受体结合的含义

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摘要

The COVID-19 pandemic poses a severe threat to human health with unprecedented social and economic disruption. Spike (S) glycoprotein in the SARS-CoV-2 virus is pivotal in understanding the virus anatomy, since it initiates the early contact with the ACE2 receptor in the human cell. The subunit S1 in chain A of S-protein has four structural domains: the receptor binding domain (RBD), the n-terminal domain (NTD) and two subdomains (SD1, SD2). We report details of the intra- and inter-molecular binding mechanism of RBD using density functional theory, including electronic structure, interatomic bonding and partial charge distribution. We identify five strong hydrogen bonds and analyze their roles in binding. This provides a pathway to a quantum-chemical understanding of the interaction between the S-protein and the ACE2 receptor with insights into the function of conserved features in the ACE2 receptor binding domain that could inform vaccine and drug development.
机译:Covid-19大流行对人类健康构成严重威胁,具有前所未有的社会和经济的破坏。 SARS-COV-2病毒中的穗糖蛋白在理解病毒解剖学方面是关键,因为它引发了与人细胞中的ACE2受体的早期接触。 S-蛋白的链A中的亚基S1具有四个结构域:受体结合结构域(RBD),N-末端结构域(NTD)和两个子域(SD1,SD2)。 我们使用密度泛函理论报告RBD和分子间结合机制的细节,包括电子结构,内部键合和部分电荷分布。 我们鉴定了五种强氢键,并分析了它们的结合中的作用。 这为量子化学理解的途径提供了对S蛋白和ACE2受体之间的相互作用的途径,具有识别疫苗和药物发育的ACE2受体结合结构域中的保守特征的功能。

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