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Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress

Vibrio vulnificus, an opportunistic human pathogen, produces cyclo-(l-Phe-l-Pro) (cFP), which serves as a signaling molecule controlling the ToxR-dependent expression of innate bacterial genes, and also as a virulence factor eliciting pathogenic effects on human cells by enhancing intracellular reac...

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Autores principales: Kim, In Hwang, Kim, So-Yeon, Park, Na-Young, Wen, Yancheng, Lee, Keun-Woo, Yoon, So-Young, Jie, Haneul, Lee, Kyu-Ho, Kim, Kun-Soo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6105893/
https://www.ncbi.nlm.nih.gov/pubmed/29914931
http://dx.doi.org/10.1128/IAI.00932-17
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author Kim, In Hwang
Kim, So-Yeon
Park, Na-Young
Wen, Yancheng
Lee, Keun-Woo
Yoon, So-Young
Jie, Haneul
Lee, Kyu-Ho
Kim, Kun-Soo
author_facet Kim, In Hwang
Kim, So-Yeon
Park, Na-Young
Wen, Yancheng
Lee, Keun-Woo
Yoon, So-Young
Jie, Haneul
Lee, Kyu-Ho
Kim, Kun-Soo
author_sort Kim, In Hwang
collection PubMed
description Vibrio vulnificus, an opportunistic human pathogen, produces cyclo-(l-Phe-l-Pro) (cFP), which serves as a signaling molecule controlling the ToxR-dependent expression of innate bacterial genes, and also as a virulence factor eliciting pathogenic effects on human cells by enhancing intracellular reactive oxygen species levels. We found that cFP facilitated the protection of V. vulnificus against hydrogen peroxide. At a concentration of 1 mM, cFP enhanced the level of the transcriptional regulator RpoS, which in turn induced expression of katG, encoding hydroperoxidase I, an enzyme that detoxifies H(2)O(2) to overcome oxidative stress. We found that cFP upregulated the transcription of the histone-like proteins vHUα and vHUβ through the cFP-dependent regulator LeuO. LeuO binds directly to upstream regions of vhuA and vhuB to enhance transcription. vHUα and vHUβ then enhance the level of RpoS posttranscriptionally by stabilizing the mRNA. This cFP-mediated ToxR-LeuO-vHUαβ-RpoS pathway also upregulates genes known to be members of the RpoS regulon, suggesting that cFP acts as a cue for the signaling pathway responsible for both the RpoS and the LeuO regulons. Taken together, this study shows that cFP plays an important role as a virulence factor, as well as a signal for the protection of the cognate pathogen.
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spelling pubmed-61058932018-08-31 Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress Kim, In Hwang Kim, So-Yeon Park, Na-Young Wen, Yancheng Lee, Keun-Woo Yoon, So-Young Jie, Haneul Lee, Kyu-Ho Kim, Kun-Soo Infect Immun Molecular Pathogenesis Vibrio vulnificus, an opportunistic human pathogen, produces cyclo-(l-Phe-l-Pro) (cFP), which serves as a signaling molecule controlling the ToxR-dependent expression of innate bacterial genes, and also as a virulence factor eliciting pathogenic effects on human cells by enhancing intracellular reactive oxygen species levels. We found that cFP facilitated the protection of V. vulnificus against hydrogen peroxide. At a concentration of 1 mM, cFP enhanced the level of the transcriptional regulator RpoS, which in turn induced expression of katG, encoding hydroperoxidase I, an enzyme that detoxifies H(2)O(2) to overcome oxidative stress. We found that cFP upregulated the transcription of the histone-like proteins vHUα and vHUβ through the cFP-dependent regulator LeuO. LeuO binds directly to upstream regions of vhuA and vhuB to enhance transcription. vHUα and vHUβ then enhance the level of RpoS posttranscriptionally by stabilizing the mRNA. This cFP-mediated ToxR-LeuO-vHUαβ-RpoS pathway also upregulates genes known to be members of the RpoS regulon, suggesting that cFP acts as a cue for the signaling pathway responsible for both the RpoS and the LeuO regulons. Taken together, this study shows that cFP plays an important role as a virulence factor, as well as a signal for the protection of the cognate pathogen. American Society for Microbiology 2018-08-22 /pmc/articles/PMC6105893/ /pubmed/29914931 http://dx.doi.org/10.1128/IAI.00932-17 Text en Copyright © 2018 Kim et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Molecular Pathogenesis
Kim, In Hwang
Kim, So-Yeon
Park, Na-Young
Wen, Yancheng
Lee, Keun-Woo
Yoon, So-Young
Jie, Haneul
Lee, Kyu-Ho
Kim, Kun-Soo
Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title_full Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title_fullStr Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title_full_unstemmed Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title_short Cyclo-(l-Phe-l-Pro), a Quorum-Sensing Signal of Vibrio vulnificus, Induces Expression of Hydroperoxidase through a ToxR-LeuO-HU-RpoS Signaling Pathway To Confer Resistance against Oxidative Stress
title_sort cyclo-(l-phe-l-pro), a quorum-sensing signal of vibrio vulnificus, induces expression of hydroperoxidase through a toxr-leuo-hu-rpos signaling pathway to confer resistance against oxidative stress
topic Molecular Pathogenesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6105893/
https://www.ncbi.nlm.nih.gov/pubmed/29914931
http://dx.doi.org/10.1128/IAI.00932-17
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