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Michael Acceptors Tuned by the Pivotal Aromaticity of Histidine to Block COVID-19 Activity.
Poater, Albert.
  • Poater A; Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, C/Ma Aurèlia Capmany 69, 17003 Girona, Catalonia, Spain.
J Phys Chem Lett ; 11(15): 6262-6265, 2020 Aug 06.
Article in English | MEDLINE | ID: covidwho-741662
ABSTRACT
The question of whether COVID protease (SARS-CoV-2 Mpro) can be blocked by inhibitors has been examined, with a particularly successful performance exhibited by α-ketoamide derivative substrates like 13b of Hilgenfeld and co-workers (Zhang, L., et al. Science 2020, 368, 409-412). After the biological characterization, here density functional theory calculations explain not only how inhibitor 13b produces a thermodynamically favorable interaction but also how to reach it kinetically. The controversial and unprovable concept of aromaticity here enjoys being the agent that rationalizes the seemingly innocent role of histidine (His41 of Mpro). It has a hydrogen bond with the hydroxyl group and is the proton carrier of the thiol of Cys145 at almost zero energy cost that favors the interaction with the inhibitor that acts as a Michael acceptor.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Antiviral Agents / Pneumonia, Viral / Cysteine Proteinase Inhibitors / Viral Nonstructural Proteins / Coronavirus Infections / Betacoronavirus / Histidine Language: English Journal: J Phys Chem Lett Year: 2020 Document Type: Article Affiliation country: Acs.jpclett.0c01828

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Antiviral Agents / Pneumonia, Viral / Cysteine Proteinase Inhibitors / Viral Nonstructural Proteins / Coronavirus Infections / Betacoronavirus / Histidine Language: English Journal: J Phys Chem Lett Year: 2020 Document Type: Article Affiliation country: Acs.jpclett.0c01828