Diketo acid inhibitors of nsp13 of SARS-CoV-2 block viral replication

Corona, Angela
First
;
Emmolo, Roberta;Tramontano, Enzo
2023-01-01

Abstract

For RNA viruses, RNA helicases have long been recognized to play critical roles during virus replication cycles, facilitating proper folding and replication of viral RNAs, therefore representing an ideal target for drug discovery. SARS-CoV-2 helicase, the non-structural protein 13 (nsp13) is a highly conserved protein among all known coronaviruses, and, at the moment, is one of the most explored viral targets to identify new possible antiviral agents. In the present study, we present six diketo acids (DKAs) as nsp13 inhibitors able to block both SARS-CoV-2 nsp13 enzymatic functions. Among them four compounds were able to inhibit viral replication in the low micromolar range, being active also on other human coronaviruses such as HCoV229E and MERS CoV. The experimental investigation of the binding mode revealed ATP-non-competitive kinetics of inhibition, not affected by substrate-displacement effect, suggesting an allosteric binding mode that was further supported by molecular modelling calculations predicting the binding into an allosteric conserved site located in the RecA2 domain.
2023
Drug development
Helicase
SARS-CoV-2 inhibition
Unwinding inhibition
nsp13
Files in This Item:
File Size Format  
2023.AVR. NSP13.1-s2.0-S0166354223001754-main.pdf

open access

Type: versione editoriale
Size 4.22 MB
Format Adobe PDF
4.22 MB Adobe PDF View/Open

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Questionnaire and social

Share on:
Impostazioni cookie