Screening of Mpro Protease (SARS-CoV-2) Covalent Inhibitors from an Anthocyanin-Rich Blueberry Extract Using an HRMS-Based Analytical Platform

Altomare, Alessandra and Baron, Giovanna and Cambiaghi, Giulia and Ferrario, Giulio and Zoanni, Beatrice and Della Vedova, Larissa and Fumagalli, Giulio Maria and D’Alessandro, Sarah and Parapini, Silvia and Vittorio, Serena and Vistoli, Giulio and Riso, Patrizia and Carini, Marina and Delbue, Serena and Aldini, Giancarlo (2024) Screening of Mpro Protease (SARS-CoV-2) Covalent Inhibitors from an Anthocyanin-Rich Blueberry Extract Using an HRMS-Based Analytical Platform. Molecules, 29 (11). p. 2702. ISSN 1420-3049

[thumbnail of molecules-29-02702.pdf] Text
molecules-29-02702.pdf - Published Version

Download (4MB)

Abstract

Background: The viral main protease (Mpro) of SARS-CoV-2 has been recently proposed as a key target to inhibit virus replication in the host. Therefore, molecules that can bind the catalytic site of Mpro could be considered as potential drug candidates in the treatment of SARS-CoV-2 infections. Here we proposed the application of a state-of-the-art analytical platform which combines metabolomics and protein structure analysis to fish-out potential active compounds deriving from a natural matrix, i.e., a blueberry extract. Methods: The experiments focus on finding MS covalent inhibitors of Mpro that contain in their structure a catechol/pyrogallol moiety capable of binding to the nucleophilic amino acids of the enzyme’s catalytic site. Results: Among the potential candidates identified, the delphinidin-3-glucoside showed the most promising results. Its antiviral activity has been confirmed in vitro on Vero E6 cells infected with SARS-CoV-2, showing a dose-dependent inhibitory effect almost comparable to the known Mpro inhibitor baicalin. The interaction of delphinidin-3-glucoside with the Mpro pocket observed was also evaluated by computational studies. Conclusions: The HRMS analytical platform described proved to be effective in identifying compounds that covalently bind Mpro and are active in the inhibition of SARS-CoV-2 replication, such as delphinidin-3-glucoside.

Item Type: Article
Subjects: Science Repository > Biological Science
Depositing User: Managing Editor
Date Deposited: 07 Jun 2024 11:57
Last Modified: 07 Jun 2024 11:57
URI: http://research.manuscritpub.com/id/eprint/4179

Actions (login required)

View Item
View Item