The N-terminal peptide of the main protease of SARS-CoV-2, targeting dimer interface, inhibits its proteolytic activity

Sunyu song, Yeseul kim, Kiwoong kwak, Hyeonmin Lee, Hyunjae Park, Young Bong Kim, Hee Jung Lee, lin-woo kang
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Abstract

The main protease (Mpro) of SARS-CoV-2 cleaves 11 sites of viral polypeptide chains and generates essential non-structural proteins for viral replication. Mpro is an important drug target against COVID-19. In this study, we developed a real-time fluorometric turn-on assay system to evaluate Mpro proteolytic activity for a substrate peptide between NSP4 and NSP5. It produced reproducible and reliable results suitable for HTS inhibitor assays. Thus far, most inhibitors against Mpro target the active site for substrate binding. Mpro exists as a dimer, which is essential for its activity. We investigated the potential of the Mpro dimer interface to act as a drug target. The dimer interface is formed of domain II and domain III of each protomer, in which N-terminal ten amino acids of the domain I are bound in the middle as a sandwich. The N-terminal part provides approximately 39% of the dimer interface between two protomers. In the real-time fluorometric turn-on assay system, peptides of the N-terminal ten amino acids, N10, can inhibit the Mpro activity. The dimer interface could be a prospective drug target against Mpro. The N-terminal sequence can help develop a potential inhibitor.
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SARS-CoV-2主要蛋白酶的n端肽靶向二聚体界面,抑制其蛋白水解活性
SARS-CoV-2的主要蛋白酶(Mpro)可切割病毒多肽链的11个位点,并产生病毒复制所必需的非结构蛋白。Mpro是抗新冠肺炎的重要药物靶点。在这项研究中,我们开发了一种实时荧光开启分析系统来评估Mpro对NSP4和NSP5之间的底物肽的蛋白水解活性。结果重现性好,可靠,适用于HTS抑制剂测定。到目前为止,大多数Mpro抑制剂靶向底物结合的活性位点。Mpro以二聚体的形式存在,这对其活性至关重要。我们研究了Mpro二聚体界面作为药物靶标的潜力。二聚体界面由每个原聚体的结构域II和结构域III组成,其中I结构域的n端十个氨基酸结合在中间形成三明治。n端部分提供了两个原聚体之间约39%的二聚体界面。在实时荧光分析系统中,n端十个氨基酸的肽N10可以抑制Mpro的活性。二聚体界面可能是Mpro的潜在药物靶点。n端序列可以帮助开发潜在的抑制剂。
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