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Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors

We present a near-term treatment strategy to tackle pandemic outbreaks of coronaviruses with no specific drugs/vaccines by combining evolutionary and physical principles to identify conserved viral domains containing druggable Zn-sites that can be targeted by clinically safe Zn-ejecting compounds. B...

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Autores principales: Sargsyan, Karen, Lin, Chien-Chu, Chen, Ting, Grauffel, Cédric, Chen, Yi-Ping, Yang, Wei-Zen, Yuan, Hanna S., Lim, Carmay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162115/
https://www.ncbi.nlm.nih.gov/pubmed/34094251
http://dx.doi.org/10.1039/d0sc02646h
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author Sargsyan, Karen
Lin, Chien-Chu
Chen, Ting
Grauffel, Cédric
Chen, Yi-Ping
Yang, Wei-Zen
Yuan, Hanna S.
Lim, Carmay
author_facet Sargsyan, Karen
Lin, Chien-Chu
Chen, Ting
Grauffel, Cédric
Chen, Yi-Ping
Yang, Wei-Zen
Yuan, Hanna S.
Lim, Carmay
author_sort Sargsyan, Karen
collection PubMed
description We present a near-term treatment strategy to tackle pandemic outbreaks of coronaviruses with no specific drugs/vaccines by combining evolutionary and physical principles to identify conserved viral domains containing druggable Zn-sites that can be targeted by clinically safe Zn-ejecting compounds. By applying this strategy to SARS-CoV-2 polyprotein-1ab, we predicted multiple labile Zn-sites in papain-like cysteine protease (PL(pro)), nsp10 transcription factor, and nsp13 helicase. These are attractive drug targets because they are highly conserved among coronaviruses and play vital structural/catalytic roles in viral proteins indispensable for virus replication. We show that five Zn-ejectors can release Zn(2+) from PL(pro) and nsp10, and clinically-safe disulfiram and ebselen can not only covalently bind to the Zn-bound cysteines in both proteins, but also inhibit PL(pro) protease. We propose combining disulfiram/ebselen with broad-spectrum antivirals/drugs to target different conserved domains acting at various stages of the virus life cycle to synergistically inhibit SARS-CoV-2 replication and reduce the emergence of drug resistance.
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spelling pubmed-81621152021-06-04 Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors Sargsyan, Karen Lin, Chien-Chu Chen, Ting Grauffel, Cédric Chen, Yi-Ping Yang, Wei-Zen Yuan, Hanna S. Lim, Carmay Chem Sci Chemistry We present a near-term treatment strategy to tackle pandemic outbreaks of coronaviruses with no specific drugs/vaccines by combining evolutionary and physical principles to identify conserved viral domains containing druggable Zn-sites that can be targeted by clinically safe Zn-ejecting compounds. By applying this strategy to SARS-CoV-2 polyprotein-1ab, we predicted multiple labile Zn-sites in papain-like cysteine protease (PL(pro)), nsp10 transcription factor, and nsp13 helicase. These are attractive drug targets because they are highly conserved among coronaviruses and play vital structural/catalytic roles in viral proteins indispensable for virus replication. We show that five Zn-ejectors can release Zn(2+) from PL(pro) and nsp10, and clinically-safe disulfiram and ebselen can not only covalently bind to the Zn-bound cysteines in both proteins, but also inhibit PL(pro) protease. We propose combining disulfiram/ebselen with broad-spectrum antivirals/drugs to target different conserved domains acting at various stages of the virus life cycle to synergistically inhibit SARS-CoV-2 replication and reduce the emergence of drug resistance. The Royal Society of Chemistry 2020-09-01 /pmc/articles/PMC8162115/ /pubmed/34094251 http://dx.doi.org/10.1039/d0sc02646h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sargsyan, Karen
Lin, Chien-Chu
Chen, Ting
Grauffel, Cédric
Chen, Yi-Ping
Yang, Wei-Zen
Yuan, Hanna S.
Lim, Carmay
Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title_full Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title_fullStr Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title_full_unstemmed Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title_short Multi-targeting of functional cysteines in multiple conserved SARS-CoV-2 domains by clinically safe Zn-ejectors
title_sort multi-targeting of functional cysteines in multiple conserved sars-cov-2 domains by clinically safe zn-ejectors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162115/
https://www.ncbi.nlm.nih.gov/pubmed/34094251
http://dx.doi.org/10.1039/d0sc02646h
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