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QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species

Pathogenic Vibrio species cause diseases in diverse marine animals reared in aquaculture. Since their pathogenesis, persistence, and survival in marine environments are regulated by quorum sensing (QS), QS interference has attracted attention as a means to control these bacteria in aquatic settings....

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Autores principales: Kim, Byoung Sik, Jang, Song Yee, Bang, Ye-ji, Hwang, Jungwon, Koo, Youngwon, Jang, Kyung Ku, Lim, Dongyeol, Kim, Myung Hee, Choi, Sang Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5790914/
https://www.ncbi.nlm.nih.gov/pubmed/29382732
http://dx.doi.org/10.1128/mBio.02262-17
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author Kim, Byoung Sik
Jang, Song Yee
Bang, Ye-ji
Hwang, Jungwon
Koo, Youngwon
Jang, Kyung Ku
Lim, Dongyeol
Kim, Myung Hee
Choi, Sang Ho
author_facet Kim, Byoung Sik
Jang, Song Yee
Bang, Ye-ji
Hwang, Jungwon
Koo, Youngwon
Jang, Kyung Ku
Lim, Dongyeol
Kim, Myung Hee
Choi, Sang Ho
author_sort Kim, Byoung Sik
collection PubMed
description Pathogenic Vibrio species cause diseases in diverse marine animals reared in aquaculture. Since their pathogenesis, persistence, and survival in marine environments are regulated by quorum sensing (QS), QS interference has attracted attention as a means to control these bacteria in aquatic settings. A few QS inhibitors of Vibrio species have been reported, but detailed molecular mechanisms are lacking. Here, we identified a novel, potent, and selective Vibrio QS inhibitor, named QStatin [1-(5-bromothiophene-2-sulfonyl)-1H-pyrazole], which affects Vibrio harveyi LuxR homologues, the well-conserved master transcriptional regulators for QS in Vibrio species. Crystallographic and biochemical analyses showed that QStatin binds tightly to a putative ligand-binding pocket in SmcR, the LuxR homologue in V. vulnificus, and changes the flexibility of the protein, thereby altering its transcription regulatory activity. Transcriptome analysis revealed that QStatin results in SmcR dysfunction, affecting the expression of SmcR regulon required for virulence, motility/chemotaxis, and biofilm dynamics. Notably, QStatin attenuated representative QS-regulated phenotypes in various Vibrio species, including virulence against the brine shrimp (Artemia franciscana). Together, these results provide molecular insights into the mechanism of action of an effective, sustainable QS inhibitor that is less susceptible to resistance than other antimicrobial agents and useful in controlling the virulence of Vibrio species in aquacultures.
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spelling pubmed-57909142018-02-05 QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species Kim, Byoung Sik Jang, Song Yee Bang, Ye-ji Hwang, Jungwon Koo, Youngwon Jang, Kyung Ku Lim, Dongyeol Kim, Myung Hee Choi, Sang Ho mBio Research Article Pathogenic Vibrio species cause diseases in diverse marine animals reared in aquaculture. Since their pathogenesis, persistence, and survival in marine environments are regulated by quorum sensing (QS), QS interference has attracted attention as a means to control these bacteria in aquatic settings. A few QS inhibitors of Vibrio species have been reported, but detailed molecular mechanisms are lacking. Here, we identified a novel, potent, and selective Vibrio QS inhibitor, named QStatin [1-(5-bromothiophene-2-sulfonyl)-1H-pyrazole], which affects Vibrio harveyi LuxR homologues, the well-conserved master transcriptional regulators for QS in Vibrio species. Crystallographic and biochemical analyses showed that QStatin binds tightly to a putative ligand-binding pocket in SmcR, the LuxR homologue in V. vulnificus, and changes the flexibility of the protein, thereby altering its transcription regulatory activity. Transcriptome analysis revealed that QStatin results in SmcR dysfunction, affecting the expression of SmcR regulon required for virulence, motility/chemotaxis, and biofilm dynamics. Notably, QStatin attenuated representative QS-regulated phenotypes in various Vibrio species, including virulence against the brine shrimp (Artemia franciscana). Together, these results provide molecular insights into the mechanism of action of an effective, sustainable QS inhibitor that is less susceptible to resistance than other antimicrobial agents and useful in controlling the virulence of Vibrio species in aquacultures. American Society for Microbiology 2018-01-30 /pmc/articles/PMC5790914/ /pubmed/29382732 http://dx.doi.org/10.1128/mBio.02262-17 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 Research Article
Kim, Byoung Sik
Jang, Song Yee
Bang, Ye-ji
Hwang, Jungwon
Koo, Youngwon
Jang, Kyung Ku
Lim, Dongyeol
Kim, Myung Hee
Choi, Sang Ho
QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title_full QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title_fullStr QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title_full_unstemmed QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title_short QStatin, a Selective Inhibitor of Quorum Sensing in Vibrio Species
title_sort qstatin, a selective inhibitor of quorum sensing in vibrio species
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5790914/
https://www.ncbi.nlm.nih.gov/pubmed/29382732
http://dx.doi.org/10.1128/mBio.02262-17
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