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Molecular docking between human TMPRSS2 and SARS-CoV-2 spike protein: conformation and intermolecular interactions

机译:人TMPRSS2和SARS-COV-2穗蛋白质之间的分子对接:构象和分子间相互作用

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摘要

Entry of SARS-CoV-2, etiological agent of COVID-19, in the host cell is driven by the interaction of its spike protein with human ACE2 receptor and a serine protease, TMPRSS2. Although complex between SARS-CoV-2 spike protein and ACE2 has been structurally resolved, the molecular details of the SARS-CoV-2 and TMPRSS2 complex are still elusive. TMPRSS2 is responsible for priming of the viral spike protein that entails cleavage of the spike protein at two potential sites, Arg685/Ser686 and Arg815/Ser816. The present study aims to investigate the conformational attributes of the molecular complex between TMPRSS2 and SARS-CoV-2 spike protein, in order to discern the finer details of the priming of viral spike protein. Briefly, full length structural model of TMPRSS2 was developed and docked against the resolved structure of SARS-CoV-2 spike protein with directional restraints of both cleavage sites. The docking simulations showed that TMPRSS2 interacts with the two different loops of SARS-CoV-2 spike protein, each containing different cleavage sites. Key functional residues of TMPRSS2 (His296, Ser441 and Ser460) were found to interact with immediate flanking residues of cleavage sites of SARS-CoV-2 spike protein. Compared to the N-terminal cleavage site (Arg685/Ser686), TMPRSS2 region that interact with C-terminal cleavage site (Arg815/Ser816) of the SARS-CoV-2 spike protein was predicted as relatively more druggable. In summary, the present study provides structural characteristics of molecular complex between human TMPRSS2 and SARS-CoV-2 spike protein and points to the candidate drug targets that could further be exploited to direct structure base drug designing.
机译:在宿主细胞中进入SARS-COV-2,Covid-19的病因试剂,其尖刺蛋白与人ACE2受体的相互作用和丝氨酸蛋白酶,TMPRSS2。虽然SARS-COV-2穗蛋白和ACE2之间的复杂性已经在结构上解决,但SARS-COV-2和TMPRSS2复合物的分子细节仍然难以捉摸。 TMPRSS2负责对病毒穗蛋白的引发,需要在两个潜在位点处切割尖峰蛋白,ARG685 / SER686和ARG815 / SER816。本研究旨在探讨TMPRS2和SARS-COV-2穗蛋白之间的分子复合物的构象属性,以辨别病毒穗蛋白的引发细节。简而言之,开发了TMPRSS2的全长结构模型,并根据SARS-COV-2尖峰蛋白的分辨结构,其具有裂解位点的定向约束。对接模拟表明TMPRS2与SARS-COV-2穗蛋白的两种不同环相互作用,每个含有不同的切割位点。发现TMPRSS2的关键官能残留物(HIS296,SER441和SER460)与SARS-COV-2穗蛋白的切割位点的立即侧翼残留相互作用。与N-末端切割位点(ARG685 / SER686)相比,预测SARS-COV-2穗蛋白的C末端切割位点(ARG815 / SER816)的TMPRS2区被预测为相对更可用的可用性。发明内容本研究提供人TMPRSS2和SARS-COV-2穗蛋白分子复合物的结构特征,并指向可进一步利用以直接结构基础药物设计的候选药物靶标。

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