A yeast-based system to study SARS-CoV-2 Mpro structure and to identify nirmatrelvir resistant mutations.

TitleA yeast-based system to study SARS-CoV-2 Mpro structure and to identify nirmatrelvir resistant mutations.
Publication TypeJournal Article
Year of Publication2023
AuthorsOu J, Lewandowski EM, Hu Y, Lipinski AA, Aljasser A, Colon-Ascanio M, Morgan RT, Jacobs LMC, Zhang X, Bikowitz MJ, Langlais PR, Tan H, Wang J, Chen Y, Choy JS
JournalPLoS Pathog
Volume19
Issue8
Paginatione1011592
Date Published2023 Aug
ISSN1553-7374
KeywordsAntiviral Agents, Coronavirus 3C Proteases, COVID-19, Humans, Mutation, Saccharomyces cerevisiae, SARS-CoV-2
Abstract

The SARS-CoV-2 main protease (Mpro) is a major therapeutic target. The Mpro inhibitor, nirmatrelvir, is the antiviral component of Paxlovid, an orally available treatment for COVID-19. As Mpro inhibitor use increases, drug resistant mutations will likely emerge. We have established a non-pathogenic system, in which yeast growth serves as an approximation for Mpro activity, enabling rapid identification of mutants with altered enzymatic activity and drug sensitivity. The E166 residue is known to be a potential hot spot for drug resistance and yeast assays identified substitutions which conferred strong nirmatrelvir resistance and others that compromised activity. On the other hand, N142A and the P132H mutation, carried by the Omicron variant, caused little to no change in drug response and activity. Standard enzymatic assays confirmed the yeast results. In turn, we solved the structures of Mpro E166R, and Mpro E166N, providing insights into how arginine may drive drug resistance while asparagine leads to reduced activity. The work presented here will help characterize novel resistant variants of Mpro that may arise as Mpro antivirals become more widely used.

DOI10.1371/journal.ppat.1011592
Alternate JournalPLoS Pathog
PubMed ID37651467
PubMed Central IDPMC10499260
Grant ListR01 AI158775 / AI / NIAID NIH HHS / United States
R15 GM129766 / GM / NIGMS NIH HHS / United States
S10 RR028976 / RR / NCRR NIH HHS / United States
S10 OD027000 / OD / NIH HHS / United States