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Allosteric regulation and crystallographic fragment screening of SARS-CoV-2 NSP15 endoribonuclease

Authors :
Andre Schutzer Godoy
Aline Minalli Nakamura
Alice Douangamath
Yun Song
Gabriela Dias Noske
Victor Oliveira Gawriljuk
Rafaela Sachetto Fernandes
Humberto D. Muniz Pereira
Ketllyn Irene Zagato Oliveira
Daren Fearon
Alexandre Dias
Tobias Krojer
Michael Fairhead
Alisa Powell
Louise Dunnet
Jose Brandao-Neto
Rachael Skyner
Rod Chalk
Frank von Delft
Dávid Bajusz
Miklós Bege
Anikó Borbás
György Miklós Keserű
Glaucius Oliva
Publication Year :
2022
Publisher :
Cold Spring Harbor Laboratory, 2022.

Abstract

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the causative agent of coronavirus disease 2019 (COVID-19). The NSP15 endoribonuclease enzyme, known as NendoU, is highly conserved and plays a critical role in the ability of the virus to evade the immune system. NendoU is a promising target for the development of new antiviral drugs. However, the complexity of the enzyme's structure and kinetics, along with the broad range of recognition sequences and lack of structural complexes, hampers the development of inhibitors. Here, we performed enzymatic characterization of NendoU in its monomeric and hexameric form, showing that hexamers are allosteric enzymes with a positive cooperative index, and with no influence of manganese on enzymatic activity. Through combining cryo-electron microscopy at different pHs, X-ray crystallography and biochemical and structural analysis, we showed that NendoU can shift between open and closed forms, which probably correspond to active and inactive states, respectively. We also explored the possibility of NendoU assembling into larger supramolecular structures and proposed a mechanism for allosteric regulation. In addition, we conducted a large fragment screening campaign against NendoU and identified several new allosteric sites that could be targeted for the development of new inhibitors. Overall, our findings provide insights into the complex structure and function of NendoU and offer new opportunities for the development of inhibitors.

Subjects

Subjects :
Genetics

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....fa19458d20abf8b20e94d12cf6d7b5e8
Full Text :
https://doi.org/10.1101/2022.09.26.509485