Noncovalent Inhibitors of SARS-CoV-2 Main Protease: A Rescaffolding Attempt

Archive ouverte

Krischuns, Tim | Paisant, Sylvain | Chen, Kuang-Yu | Thirion, Laura, N | Zettor, Agnès | Chiaravalli, Jeanne | Jacob, Yves | Bellinzoni, Marco | Naffakh, Nadia | Janin, Yves, L

Edité par CCSD ; Georg Thieme Verlag -

International audience. Out of the results of the sole large-scale screening for inhibitors of SARS-CoV-1 main protease reported in 2013, attempts to improve the identified 3-pyridyl-bearing hits have been conducted in research laboratories, either on this enzyme or more recently on the closely related SARS-CoV-2 main protease. From the resulting structural information reported, we sought to design analogues featuring some of the components providing an affinity for the active site of these proteases along with a different scaffold, which would allow for further structure-activity relationship studies and/or pharmacological improvements. We describe here the introduction of a bridging component with the aim of stabilizing the ligand conformation adopted when bound to these proteases. Accordingly, this led us to prepare 3,3-disubstituted piperazin-2-ones from an array of ketones, via either a Bargellini reaction or a multistage condensation/cyclization/hydrolysis involving ethylene diamine and potassium cyanide. However, even the most elaborate and lipophilic biphenyl-bearing analogues displayed only a weak effect in a bioluminescence-based SARS-CoV-2 main protease inhibition assay.

Consulter en ligne

Suggestions

Du même auteur

A community effort in SARS‐CoV‐2 drug discovery

Archive ouverte | Schimunek, Johannes | CCSD

International audience. The COVID‐19 pandemic continues to pose a substantial threat to human lives and is likely to do so for years to come. Despite the availability of vaccines, searching for efficient small‐molec...

The host RNA polymerase II C-terminal domain is the anchor for replication of the influenza virus genome

Archive ouverte | Krischuns, Tim | CCSD

International audience. Abstract The current model is that the influenza virus polymerase (FluPol) binds either to host RNA polymerase II (RNAP II) or to the acidic nuclear phosphoprotein 32 (ANP32), which drives it...

The RBPome of influenza A virus NP-mRNA reveals a role for TDP-43 in viral replication

Archive ouverte | Dupont, Maud | CCSD

International audience. Genome-wide approaches have significantly advanced our knowledge of the repertoire of RNA-binding proteins (RBPs) that associate with cellular polyadenylated mRNAs within eukaryotic cells. Re...

Chargement des enrichissements...