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Insights into the structural properties of SARS-CoV-2 main protease.
Akbayrak, Ibrahim Yagiz; Caglayan, Sule Irem; Kurgan, Lukasz; Uversky, Vladimir N; Coskuner-Weber, Orkid.
  • Akbayrak IY; Materials Sciences and Technologies, Turkish-German University, Sahinkaya Caddesi, No. 106, Beykoz, Istanbul, 34820, Turkey.
  • Caglayan SI; Molecular Biotechnology, Turkish-German University, Sahinkaya Caddesi, No. 106, Beykoz, Istanbul, 34820, Turkey.
  • Kurgan L; Department of Computer Science, Virginia Commonwealth University, Richmond, VA, 23284, USA.
  • Uversky VN; Molecular Medicine, USF Health Byrd Alzheimer's Research Institute, Morsani College of Medicine, University of South Florida, Tampa, FL, USA.
  • Coskuner-Weber O; Laboratory of New Methods in Biology, Institute for Biological Instrumentation of the Russian Academy of Sciences, Federal Research Center "Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences", Pushchino, Russia.
Curr Res Struct Biol ; 4: 349-355, 2022.
Article in English | MEDLINE | ID: covidwho-2122411
ABSTRACT
SARS-CoV-2 is the infectious agent responsible for the coronavirus disease since 2019, which is the viral pneumonia pandemic worldwide. The structural knowledge on SARS-CoV-2 is rather limited. These limitations are also applicable to one of the most attractive drug targets of SARS-CoV-2 proteins - namely, main protease Mpro, also known as 3C-like protease (3CLpro). This protein is crucial for the processing of the viral polyproteins and plays crucial roles in interfering viral replication and transcription. In fact, although the crystal structure of this protein with an inhibitor was solved, Mpro conformational dynamics in aqueous solution is usually studied by molecular dynamics simulations without special sampling techniques. We conducted replica exchange molecular dynamics simulations on Mpro in water and report the dynamic structures of Mpro in an aqueous environment including root mean square fluctuations, secondary structure properties, radius of gyration, and end-to-end distances, chemical shift values, intrinsic disorder characteristics of Mpro and its active sites with a set of computational tools. The active sites we found coincide with the currently known sites and include a new interface for interaction with a protein partner.
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Full text: Available Collection: International databases Database: MEDLINE Language: English Journal: Curr Res Struct Biol Year: 2022 Document Type: Article Affiliation country: J.crstbi.2022.11.001

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Full text: Available Collection: International databases Database: MEDLINE Language: English Journal: Curr Res Struct Biol Year: 2022 Document Type: Article Affiliation country: J.crstbi.2022.11.001