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Structure and inhibition of the SARS-CoV-2 main protease reveal strategy for developing dual inhibitors against Mpro and cathepsin L.


ABSTRACT: The main protease (Mpro) of SARS-CoV-2 is a key antiviral drug target. While most Mpro inhibitors have a ?-lactam glutamine surrogate at the P1 position, we recently found that several Mpro inhibitors have hydrophobic moieties at the P1 site, including calpain inhibitors II and XII, which are also active against human cathepsin L, a host protease that is important for viral entry. In this study, we solved x-ray crystal structures of Mpro in complex with calpain inhibitors II and XII and three analogs of GC-376 The structure of Mpro with calpain inhibitor II confirmed that the S1 pocket can accommodate a hydrophobic methionine side chain, challenging the idea that a hydrophilic residue is necessary at this position. The structure of calpain inhibitor XII revealed an unexpected, inverted binding pose. Together, the biochemical, computational, structural, and cellular data presented herein provide new directions for the development of dual inhibitors as SARS-CoV-2 antivirals.

SUBMITTER: Sacco MD 

PROVIDER: S-EPMC7725459 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Structure and inhibition of the SARS-CoV-2 main protease reveal strategy for developing dual inhibitors against M<sup>pro</sup> and cathepsin L.

Sacco Michael Dominic MD   Ma Chunlong C   Lagarias Panagiotis P   Gao Ang A   Townsend Julia Alma JA   Meng Xiangzhi X   Dube Peter P   Zhang Xiujun X   Hu Yanmei Y   Kitamura Naoya N   Hurst Brett B   Tarbet Bart B   Marty Michael Thomas MT   Kolocouris Antonios A   Xiang Yan Y   Chen Yu Y   Wang Jun J  

Science advances 20201209 50


The main protease (M<sup>pro</sup>) of SARS-CoV-2 is a key antiviral drug target. While most M<sup>pro</sup> inhibitors have a γ-lactam glutamine surrogate at the P1 position, we recently found that several M<sup>pro</sup> inhibitors have hydrophobic moieties at the P1 site, including calpain inhibitors II and XII, which are also active against human cathepsin L, a host protease that is important for viral entry. In this study, we solved x-ray crystal structures of M<sup>pro</sup> in complex wit  ...[more]

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