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Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens

Pathogenic bacteria can rapidly respond to stresses such as reactive oxygen species (ROS) using reversible redox-sensitive oxidation of cysteine thiol (-SH) groups in regulators. Here, we use proteomics to profile reversible ROS-induced thiol oxidation in Vibrio cholerae, the etiologic agent of chol...

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Autores principales: Zhou, Yitian, Pu, Qinqin, Chen, Jiandong, Hao, Guijuan, Gao, Rong, Ali, Afsar, Hsiao, Ansel, Stock, Ann M., Goulian, Mark, Zhu, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728512/
https://www.ncbi.nlm.nih.gov/pubmed/34936880
http://dx.doi.org/10.1016/j.celrep.2021.110147
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author Zhou, Yitian
Pu, Qinqin
Chen, Jiandong
Hao, Guijuan
Gao, Rong
Ali, Afsar
Hsiao, Ansel
Stock, Ann M.
Goulian, Mark
Zhu, Jun
author_facet Zhou, Yitian
Pu, Qinqin
Chen, Jiandong
Hao, Guijuan
Gao, Rong
Ali, Afsar
Hsiao, Ansel
Stock, Ann M.
Goulian, Mark
Zhu, Jun
author_sort Zhou, Yitian
collection PubMed
description Pathogenic bacteria can rapidly respond to stresses such as reactive oxygen species (ROS) using reversible redox-sensitive oxidation of cysteine thiol (-SH) groups in regulators. Here, we use proteomics to profile reversible ROS-induced thiol oxidation in Vibrio cholerae, the etiologic agent of cholera, and identify two modified cysteines in ArcA, a regulator of global carbon oxidation that is phosphorylated and activated under low oxygen. ROS abolishes ArcA phosphorylation but induces the formation of an intramolecular disulfide bond that promotes ArcA-ArcA interactions and sustains activity. ArcA cysteines are oxidized in cholera patient stools, and ArcA thiol oxidation drives in vitro ROS resistance, colonization of ROS-rich guts, and environmental survival. In other pathogens, such as Salmonella enterica, oxidation of conserved cysteines of ArcA orthologs also promotes ROS resistance, suggesting a common role for ROS-induced ArcA thiol oxidation in modulating ArcA activity, allowing for a balance of expression of stress- and pathogenesis-related genetic programs.
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spelling pubmed-87285122022-01-05 Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens Zhou, Yitian Pu, Qinqin Chen, Jiandong Hao, Guijuan Gao, Rong Ali, Afsar Hsiao, Ansel Stock, Ann M. Goulian, Mark Zhu, Jun Cell Rep Article Pathogenic bacteria can rapidly respond to stresses such as reactive oxygen species (ROS) using reversible redox-sensitive oxidation of cysteine thiol (-SH) groups in regulators. Here, we use proteomics to profile reversible ROS-induced thiol oxidation in Vibrio cholerae, the etiologic agent of cholera, and identify two modified cysteines in ArcA, a regulator of global carbon oxidation that is phosphorylated and activated under low oxygen. ROS abolishes ArcA phosphorylation but induces the formation of an intramolecular disulfide bond that promotes ArcA-ArcA interactions and sustains activity. ArcA cysteines are oxidized in cholera patient stools, and ArcA thiol oxidation drives in vitro ROS resistance, colonization of ROS-rich guts, and environmental survival. In other pathogens, such as Salmonella enterica, oxidation of conserved cysteines of ArcA orthologs also promotes ROS resistance, suggesting a common role for ROS-induced ArcA thiol oxidation in modulating ArcA activity, allowing for a balance of expression of stress- and pathogenesis-related genetic programs. 2021-12-21 /pmc/articles/PMC8728512/ /pubmed/34936880 http://dx.doi.org/10.1016/j.celrep.2021.110147 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Zhou, Yitian
Pu, Qinqin
Chen, Jiandong
Hao, Guijuan
Gao, Rong
Ali, Afsar
Hsiao, Ansel
Stock, Ann M.
Goulian, Mark
Zhu, Jun
Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title_full Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title_fullStr Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title_full_unstemmed Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title_short Thiol-based functional mimicry of phosphorylation of the two-component system response regulator ArcA promotes pathogenesis in enteric pathogens
title_sort thiol-based functional mimicry of phosphorylation of the two-component system response regulator arca promotes pathogenesis in enteric pathogens
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728512/
https://www.ncbi.nlm.nih.gov/pubmed/34936880
http://dx.doi.org/10.1016/j.celrep.2021.110147
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