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The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor

The genome sequence of V. cholerae O1 Biovar Eltor strain N16961 has revealed a putative antibiotic resistance (var) regulon that is predicted to encode a transcriptional activator (VarR), which is divergently transcribed relative to the putative resistance genes for both a metallo-β-lactamase (VarG...

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Autores principales: Lin, Hong-Ting Victor, Massam-Wu, Teresa, Lin, Chen-Ping, Wang, Yen-Jen Anna, Shen, Yu-Chi, Lu, Wen-Jung, Hsu, Pang-Hung, Chen, Yu-Hou, Borges-Walmsley, Maria Ines, Walmsley, Adrian Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5595328/
https://www.ncbi.nlm.nih.gov/pubmed/28898293
http://dx.doi.org/10.1371/journal.pone.0184255
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author Lin, Hong-Ting Victor
Massam-Wu, Teresa
Lin, Chen-Ping
Wang, Yen-Jen Anna
Shen, Yu-Chi
Lu, Wen-Jung
Hsu, Pang-Hung
Chen, Yu-Hou
Borges-Walmsley, Maria Ines
Walmsley, Adrian Robert
author_facet Lin, Hong-Ting Victor
Massam-Wu, Teresa
Lin, Chen-Ping
Wang, Yen-Jen Anna
Shen, Yu-Chi
Lu, Wen-Jung
Hsu, Pang-Hung
Chen, Yu-Hou
Borges-Walmsley, Maria Ines
Walmsley, Adrian Robert
author_sort Lin, Hong-Ting Victor
collection PubMed
description The genome sequence of V. cholerae O1 Biovar Eltor strain N16961 has revealed a putative antibiotic resistance (var) regulon that is predicted to encode a transcriptional activator (VarR), which is divergently transcribed relative to the putative resistance genes for both a metallo-β-lactamase (VarG) and an antibiotic efflux-pump (VarABCDEF). We sought to test whether these genes could confer antibiotic resistance and are organised as a regulon under the control of VarR. VarG was overexpressed and purified and shown to have β-lactamase activity against penicillins, cephalosporins and carbapenems, having the highest activity against meropenem. The expression of VarABCDEF in the Escherichia coli (ΔacrAB) strain KAM3 conferred resistance to a range of drugs, but most significant resistance was to the macrolide spiramycin. A gel-shift analysis was used to determine if VarR bound to the promoter regions of the resistance genes. Consistent with the regulation of these resistance genes, VarR binds to three distinct intergenic regions, varRG, varGA and varBC located upstream and adjacent to varG, varA and varC, respectively. VarR can act as a repressor at the varRG promoter region; whilst this repression was relieved upon addition of β-lactams, these did not dissociate the VarR/varRG-DNA complex, indicating that the de-repression of varR by β-lactams is indirect. Considering that the genomic arrangement of VarR-VarG is strikingly similar to that of AmpR-AmpC system, it is possible that V. cholerae has evolved a system for resistance to the newer β-lactams that would prove more beneficial to the bacterium in light of current selective pressures.
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spelling pubmed-55953282017-09-15 The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor Lin, Hong-Ting Victor Massam-Wu, Teresa Lin, Chen-Ping Wang, Yen-Jen Anna Shen, Yu-Chi Lu, Wen-Jung Hsu, Pang-Hung Chen, Yu-Hou Borges-Walmsley, Maria Ines Walmsley, Adrian Robert PLoS One Research Article The genome sequence of V. cholerae O1 Biovar Eltor strain N16961 has revealed a putative antibiotic resistance (var) regulon that is predicted to encode a transcriptional activator (VarR), which is divergently transcribed relative to the putative resistance genes for both a metallo-β-lactamase (VarG) and an antibiotic efflux-pump (VarABCDEF). We sought to test whether these genes could confer antibiotic resistance and are organised as a regulon under the control of VarR. VarG was overexpressed and purified and shown to have β-lactamase activity against penicillins, cephalosporins and carbapenems, having the highest activity against meropenem. The expression of VarABCDEF in the Escherichia coli (ΔacrAB) strain KAM3 conferred resistance to a range of drugs, but most significant resistance was to the macrolide spiramycin. A gel-shift analysis was used to determine if VarR bound to the promoter regions of the resistance genes. Consistent with the regulation of these resistance genes, VarR binds to three distinct intergenic regions, varRG, varGA and varBC located upstream and adjacent to varG, varA and varC, respectively. VarR can act as a repressor at the varRG promoter region; whilst this repression was relieved upon addition of β-lactams, these did not dissociate the VarR/varRG-DNA complex, indicating that the de-repression of varR by β-lactams is indirect. Considering that the genomic arrangement of VarR-VarG is strikingly similar to that of AmpR-AmpC system, it is possible that V. cholerae has evolved a system for resistance to the newer β-lactams that would prove more beneficial to the bacterium in light of current selective pressures. Public Library of Science 2017-09-12 /pmc/articles/PMC5595328/ /pubmed/28898293 http://dx.doi.org/10.1371/journal.pone.0184255 Text en © 2017 Lin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lin, Hong-Ting Victor
Massam-Wu, Teresa
Lin, Chen-Ping
Wang, Yen-Jen Anna
Shen, Yu-Chi
Lu, Wen-Jung
Hsu, Pang-Hung
Chen, Yu-Hou
Borges-Walmsley, Maria Ines
Walmsley, Adrian Robert
The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title_full The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title_fullStr The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title_full_unstemmed The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title_short The Vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by VarR, a LysR-type transcription factor
title_sort vibrio cholerae var regulon encodes a metallo-β-lactamase and an antibiotic efflux pump, which are regulated by varr, a lysr-type transcription factor
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5595328/
https://www.ncbi.nlm.nih.gov/pubmed/28898293
http://dx.doi.org/10.1371/journal.pone.0184255
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