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Catalytic cleavage of HEAT and subsequent covalent binding of the tetralone moiety by the SARS-CoV-2 main protease

Authors :
Yaiza Fernández-García
Dominik Oberthuer
Christian Betzel
Tobias Beck
Markus Wolf
Kristina Lorenzen
M. Domaracky
Bruno Alves Franca
Jo J. Zaitsev-Doyle
Dušan Turk
Hévila Brognaro
Arwen R. Pearson
Henry N. Chapman
Jan Meyer
Robin Schubert
Stephan Günther
M. Galchenkova
Eike C. Schulz
B. Seychell
Manfred S. Weiss
H. Andaleeb
Aida Rahmani Mashhour
Y. Gevorkov
Sven Falke
Pedram Mehrabi
V. Hennicke
Beatriz Escudero-Pérez
Xinyuanyuan Sun
Juraj Knoska
Linlin Zhang
S. Meier
J. Pletzer-Zelgert
Holger Fleckenstein
N. Ullah
Rolf Hilgenfeld
Oleksandr Yefanov
Cromarte Rogers
Henry Gieseler
Thomas J. Lane
Ariana Peck
Alke Meents
C. Schmidt
J. Wollenhaupt
J. Lieske
Huijong Han
Helen M. Ginn
Bernhard Ellinger
Diana C. F. Monteiro
Christiane Ehrt
Pontus Fischer
Illona Dunkel
F. Trost
Luca Gelisio
Sebastian Günther
A. Tolstikova
Faisal Hammad Mekky Koua
Gisel Esperanza
D. Melo
Christian G. Feiler
Matthias Rarey
Andrea Zaliani
P. Reinke
M. Schwinzer
Russell J. Cox
Heshmat Noei
Salah Awel
N. Werner
Boris Krichel
Charlotte Uetrecht
Ashwin Chari
P. Gribbon
P. Lourdu Xavier
W. Brehm
S. Saouane
M. Groessler
Brenna Norton-Baker
Frank Schlünzen
Chufeng Li
Henning Tidow
Maria Kuzikov
Johanna Hakanpää
Miriam Barthelmess
Thomas A. White
Filip Guicking
Source :
Zenodo (2020). doi:10.1101/2020.05.02.043554
Publication Year :
2020

Abstract

Here we present the crystal structure of SARS-CoV-2 main protease (Mpro) covalently bound to 2-methyl-1-tetralone. This complex was obtained by co-crystallization of Mpro with HEAT (2-(((4-hydroxyphenethyl)amino)methyl)-3,4-dihydronaphthalen-1(2H)-one) in the framework of a large X-ray crystallographic screening project of Mpro against a drug repurposing library, consisting of 5632 approved drugs or compounds in clinical phase trials. Further investigations showed that HEAT is cleaved by Mpro in an E1cB-like reaction mechanism into 2-methylene-1-tetralone and tyramine. The catalytic Cys145 subsequently binds covalently in a Michael addition to the methylene carbon atom of 2-methylene-1-tetralone. According to this postulated model HEAT is acting in a pro-drug-like fashion. It is metabolized by Mpro, followed by covalent binding of one metabolite to the active site. The structure of the covalent adduct elucidated in this study opens up a new path for developing non-peptidic inhibitors.

Details

Language :
English
Database :
OpenAIRE
Journal :
Zenodo (2020). doi:10.1101/2020.05.02.043554
Accession number :
edsair.doi.dedup.....ad748548ca306603280bbd7e9f68a2fe