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A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia

Resistance nodulation division (RND) efflux pumps, such as the SmeIJK pump of Stenotrophomonas maltophilia, are known to contribute to the multidrug resistance in Gram-negative bacteria. However, some RND pumps are constitutively expressed even though no antimicrobial stresses occur, implying that t...

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Autores principales: Huang, Yi-Wei, Liou, Rung-Shiuan, Lin, Yi-Tsung, Huang, Hsin-Hui, Yang, Tsuey-Ching
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4229105/
https://www.ncbi.nlm.nih.gov/pubmed/25390933
http://dx.doi.org/10.1371/journal.pone.0111784
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author Huang, Yi-Wei
Liou, Rung-Shiuan
Lin, Yi-Tsung
Huang, Hsin-Hui
Yang, Tsuey-Ching
author_facet Huang, Yi-Wei
Liou, Rung-Shiuan
Lin, Yi-Tsung
Huang, Hsin-Hui
Yang, Tsuey-Ching
author_sort Huang, Yi-Wei
collection PubMed
description Resistance nodulation division (RND) efflux pumps, such as the SmeIJK pump of Stenotrophomonas maltophilia, are known to contribute to the multidrug resistance in Gram-negative bacteria. However, some RND pumps are constitutively expressed even though no antimicrobial stresses occur, implying that there should be some physical implications for these RND pumps. In this study, the role of SmeIJK in antimicrobials resistance, envelope integrity, and σ(E)-mediated envelope stress response (ESR) of S. maltophilia was assessed. SmeIJK was involved in the intrinsic resistance of S. maltophilia KJ to aminoglycosides and leucomycin. Compared with the wild-type KJ, the smeIJK deletion mutant exhibited growth retardation in the MH medium, an increased sensitivity to membrane-damaging agents (MDAs), as well as activation of an σ(E)-mediated ESR. Moreover, the expression of smeIJK was further induced by sub-lethal concentrations of MDAs or surfactants in an σ(E)-dependent manner. These data collectively suggested an alternative physiological role of smeIJK in cell envelope integrity maintenance and σ(E)-mediated ESR beyond the efflux of antibiotics. Because of the necessity of the physiological role of SmeIJK in protecting S. maltophilia from the envelope stress, smeIJK is constitutively expressed, which, in turn, contributes the intrinsic resistance to aminoglycoside and leucomycin. This is the first demonstration of the linkage among RND-type efflux pump, cell envelope integrity, and σ(E)-mediated ESR in S. maltophilia.
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spelling pubmed-42291052014-11-18 A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia Huang, Yi-Wei Liou, Rung-Shiuan Lin, Yi-Tsung Huang, Hsin-Hui Yang, Tsuey-Ching PLoS One Research Article Resistance nodulation division (RND) efflux pumps, such as the SmeIJK pump of Stenotrophomonas maltophilia, are known to contribute to the multidrug resistance in Gram-negative bacteria. However, some RND pumps are constitutively expressed even though no antimicrobial stresses occur, implying that there should be some physical implications for these RND pumps. In this study, the role of SmeIJK in antimicrobials resistance, envelope integrity, and σ(E)-mediated envelope stress response (ESR) of S. maltophilia was assessed. SmeIJK was involved in the intrinsic resistance of S. maltophilia KJ to aminoglycosides and leucomycin. Compared with the wild-type KJ, the smeIJK deletion mutant exhibited growth retardation in the MH medium, an increased sensitivity to membrane-damaging agents (MDAs), as well as activation of an σ(E)-mediated ESR. Moreover, the expression of smeIJK was further induced by sub-lethal concentrations of MDAs or surfactants in an σ(E)-dependent manner. These data collectively suggested an alternative physiological role of smeIJK in cell envelope integrity maintenance and σ(E)-mediated ESR beyond the efflux of antibiotics. Because of the necessity of the physiological role of SmeIJK in protecting S. maltophilia from the envelope stress, smeIJK is constitutively expressed, which, in turn, contributes the intrinsic resistance to aminoglycoside and leucomycin. This is the first demonstration of the linkage among RND-type efflux pump, cell envelope integrity, and σ(E)-mediated ESR in S. maltophilia. Public Library of Science 2014-11-12 /pmc/articles/PMC4229105/ /pubmed/25390933 http://dx.doi.org/10.1371/journal.pone.0111784 Text en © 2014 Huang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Huang, Yi-Wei
Liou, Rung-Shiuan
Lin, Yi-Tsung
Huang, Hsin-Hui
Yang, Tsuey-Ching
A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title_full A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title_fullStr A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title_full_unstemmed A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title_short A Linkage between SmeIJK Efflux Pump, Cell Envelope Integrity, and σ(E)-Mediated Envelope Stress Response in Stenotrophomonas maltophilia
title_sort linkage between smeijk efflux pump, cell envelope integrity, and σ(e)-mediated envelope stress response in stenotrophomonas maltophilia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4229105/
https://www.ncbi.nlm.nih.gov/pubmed/25390933
http://dx.doi.org/10.1371/journal.pone.0111784
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