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In-silico design of a potential inhibitor of SARS-CoV-2 S protein

机译:SARS-COV-2 S蛋白潜在抑制剂的硅设计

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摘要

The SARS-CoV-2 virus has caused a pandemic and is public health emergency of international concern. As of now, no registered therapies are available for treatment of coronavirus infection. The viral infection depends on the attachment of spike (S) glycoprotein to human cell receptor angiotensin-converting enzyme 2 (ACE2). We have designed a protein inhibitor (ΔABP-D25Y) targeting S protein using computational approach. The inhibitor consists of two α helical peptides homologues to protease domain (PD) of ACE2. Docking studies and molecular dynamic simulation revealed that the inhibitor binds exclusively at the ACE2 binding site of S protein. The computed binding affinity of the inhibitor is higher than the ACE2 and thus will likely out compete ACE2 for binding to S protein. Hence, the proposed inhibitor ΔABP-D25Y could be a potential blocker of S protein and receptor binding domain (RBD) attachment.
机译:SARS-COV-2病毒引起了大流行,是国际问题的公共卫生紧急情况。 截至目前,没有注册的疗法可用于治疗冠状病毒感染。 病毒感染取决于穗状体蛋白对人细胞受体血管紧张素转化酶2(ACE2)的附着。 我们设计了使用计算方法的靶向S蛋白的蛋白质抑制剂(ΔABP-D25Y)。 抑制剂由两种α螺旋肽同源物组成,ace2的蛋白酶结构域(Pd)。 对接研究和分子动态模拟显示抑制剂专门结合S蛋白的ACE2结合位点。 抑制剂的计算结合亲和力高于ACE2,因此可能会缩合ACE2用于结合S蛋白质。 因此,所提出的抑制剂ΔABP-D25Y可以是S蛋白质和受体结合结构域(RBD)附着的潜在阻滞剂。

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