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A proteomics-MM/PBSA dual approach for the analysis of SARS-CoV-2 main protease substrate peptide specificity.
Gallo, Gloria; Barcick, Uilla; Coelho, Camila; Salardani, Murilo; Camacho, Maurício F; Cajado-Carvalho, Daniela; Loures, Flávio V; Serrano, Solange M T; Hardy, Leon; Zelanis, André; Würtele, Martin.
  • Gallo G; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Barcick U; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Coelho C; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Salardani M; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Camacho MF; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Cajado-Carvalho D; Laboratory of Applied Toxinology, Center of Toxins, Immune-Response and Cell Signaling (CeTICS), Butantan Institute, São Paulo, Brazil.
  • Loures FV; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Serrano SMT; Laboratory of Applied Toxinology, Center of Toxins, Immune-Response and Cell Signaling (CeTICS), Butantan Institute, São Paulo, Brazil.
  • Hardy L; Department of Physics, University of South Florida, Tampa, United States.
  • Zelanis A; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil.
  • Würtele M; Department of Science and Technology, Federal University of São Paulo, São José dos Campos, Brazil. Electronic address: martin.wurtele@unifesp.com.
Peptides ; 154: 170814, 2022 08.
Article in English | MEDLINE | ID: covidwho-1867666
ABSTRACT
The main protease Mpro of SARS-CoV-2 is a well-studied major drug target. Additionally, it has been linked to this virus' pathogenicity, possibly through off-target effects. It is also an interesting diagnostic target. To obtain more data on possible substrates as well as to assess the enzyme's primary specificity a two-step approach was introduced. First, Terminal Amine Isobaric Labeling of Substrates (TAILS) was employed to identify novel Mpro cleavage sites in a mouse lung proteome library. In a second step, using a structural homology model, the MM/PBSA variant MM/GBSA (Molecular Mechanics Poisson-Boltzmann/Generalized Born Surface Area) free binding energy calculations were carried out to determine relevant interacting amino acids. As a result, 58 unique cleavage sites were detected, including six that displayed glutamine at the P1 position. Furthermore, modeling results indicated that Mpro has a far higher potential promiscuity towards substrates than expected. The combination of proteomics and MM/PBSA modeling analysis can thus be useful for elucidating the specificity of Mpro, and thus open novel perspectives for the development of future peptidomimetic drugs against COVID-19, as well as diagnostic tools.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: SARS-CoV-2 / COVID-19 Type of study: Diagnostic study Topics: Variants Limits: Animals Language: English Journal: Peptides Year: 2022 Document Type: Article Affiliation country: J.peptides.2022.170814

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Full text: Available Collection: International databases Database: MEDLINE Main subject: SARS-CoV-2 / COVID-19 Type of study: Diagnostic study Topics: Variants Limits: Animals Language: English Journal: Peptides Year: 2022 Document Type: Article Affiliation country: J.peptides.2022.170814