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变构调节和冠状病毒 3CLpro 的抑制作用通过 HDX-MS 揭示。

Allosteric Regulation and Inhibition of Coronavirus 3CLpro Revealed by HDX-MS.

机构信息

Immunological Disease Research Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Rd, 201203, Shanghai, PR China.

University of Chinese Academy of Sciences, No. 1 Yanqihu East Rd, Huairou District, 101408, Beijing, PR China.

出版信息

Chembiochem. 2024 Jul 2;25(13):e202400001. doi: 10.1002/cbic.202400001. Epub 2024 Jun 21.

Abstract

Coronavirus (CoV) infections have caused contagious and fatal respiratory diseases in humans worldwide. CoV 3-chymotrypsin-like proteases (3CLpro or Mpro) play an important role in viral maturation, and maintenance of their dimeric conformation is crucial for viral activity. Therefore, allosterically regulated dimerization of 3CLpro can be employed as a drug development target. Here, we investigated the allosteric regulatory mechanism of 3CLpro dimerization by using hydrogen/deuterium exchange coupled with mass spectrometry (HDX-MS) technology. We found that the FLAG tag directly coupled to the N-finger of 3CLpro significantly increased HDX kinetics at the dimer interface, and 3CLpro transformed from a dimer to a monomer. The 3CLpro mutants of SARS-CoV-2, which are monomeric, also exhibited increased deuterium exchange. Binding of the allosteric inhibitor Gastrodenol to most betacoronavirus 3CLpros led to increased allosteric deuterium exchange, resulting in the monomeric conformation of the CoV 3CLpro upon binding. Molecular dynamics (MD) simulation analysis further indicated the molecular mechanism of action of Gastrodenol on CoV 3CLpro: binding of Gastrodenol to SARS-CoV-2 3CLpro destroyed the hydrogen bond in the dimer interface. These results suggest that Gastrodenol may be a potential broad-spectrum anti-betacoronavirus drug.

摘要

冠状病毒(CoV)感染已在全球范围内导致传染性和致命性呼吸道疾病。CoV 3-糜蛋白酶样蛋白酶(3CLpro 或 Mpro)在病毒成熟过程中发挥重要作用,其二聚体构象的维持对于病毒活性至关重要。因此,3CLpro 的变构调节二聚化可作为药物开发的靶点。在这里,我们使用氢/氘交换结合质谱(HDX-MS)技术研究了 3CLpro 二聚化的变构调节机制。我们发现,FLAG 标签直接与 3CLpro 的 N-指连接,显著增加了二聚体界面处的 HDX 动力学,并且 3CLpro 从二聚体转变为单体。SARS-CoV-2 的单体 3CLpro 突变体也表现出更高的氘交换。变构抑制剂 Gastrodin 与大多数β冠状病毒 3CLpros 的结合导致变构氘交换增加,导致 CoV 3CLpro 结合后呈现单体构象。分子动力学(MD)模拟分析进一步表明了 Gastrodin 对 CoV 3CLpro 的作用机制:Gastrodin 与 SARS-CoV-2 3CLpro 的结合破坏了二聚体界面中的氢键。这些结果表明 Gastrodin 可能是一种潜在的广谱抗β冠状病毒药物。

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