Cargando…

A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria

Mycobacterium tuberculosis has the ability to survive inside macrophages under acid-nitrosative stress. M. tuberculosis Rv1685c and its ortholog in M. smegmatis, MSMEG_3765, are induced on exposure to acid-nitrosative stress. Both genes are annotated as TetR transcriptional regulators, a family of p...

Descripción completa

Detalles Bibliográficos
Autores principales: Perrone, Filomena, De Siena, Barbara, Muscariello, Lidia, Kendall, Sharon L., Waddell, Simon J., Sacco, Margherita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5660060/
https://www.ncbi.nlm.nih.gov/pubmed/29109706
http://dx.doi.org/10.3389/fmicb.2017.02039
_version_ 1783274220316262400
author Perrone, Filomena
De Siena, Barbara
Muscariello, Lidia
Kendall, Sharon L.
Waddell, Simon J.
Sacco, Margherita
author_facet Perrone, Filomena
De Siena, Barbara
Muscariello, Lidia
Kendall, Sharon L.
Waddell, Simon J.
Sacco, Margherita
author_sort Perrone, Filomena
collection PubMed
description Mycobacterium tuberculosis has the ability to survive inside macrophages under acid-nitrosative stress. M. tuberculosis Rv1685c and its ortholog in M. smegmatis, MSMEG_3765, are induced on exposure to acid-nitrosative stress. Both genes are annotated as TetR transcriptional regulators, a family of proteins that regulate a wide range of cellular activities, including multidrug resistance, carbon catabolism and virulence. Here, we demonstrate that MSMEG_3765 is co-transcribed with the upstream genes MSMEG_3762 and MSMEG_3763, encoding efflux pump components. RTq-PCR and GFP-reporter assays showed that the MSMEG_3762/63/65 gene cluster, and the orthologous region in M. tuberculosis (Rv1687c/86c/85c), was up-regulated in a MSMEG_3765 null mutant, suggesting that MSMEG_3765 acts as a repressor, typical of this family of regulators. We further defined the MSMEG_3765 regulon using genome-wide transcriptional profiling and used reporter assays to confirm that the MSMEG_3762/63/65 promoter was induced under acid-nitrosative stress. A putative 36 bp regulatory motif was identified upstream of the gene clusters in both M. smegmatis and M. tuberculosis and purified recombinant MSMEG_3765 protein was found to bind to DNA fragments containing this motif from both M. smegmatis and M. tuberculosis upstream regulatory regions. These results suggest that the TetR repressor MSMEG_3765/Rv1685c controls expression of an efflux pump with an, as yet, undefined role in the mycobacterial response to acid-nitrosative stress.
format Online
Article
Text
id pubmed-5660060
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-56600602017-11-06 A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria Perrone, Filomena De Siena, Barbara Muscariello, Lidia Kendall, Sharon L. Waddell, Simon J. Sacco, Margherita Front Microbiol Microbiology Mycobacterium tuberculosis has the ability to survive inside macrophages under acid-nitrosative stress. M. tuberculosis Rv1685c and its ortholog in M. smegmatis, MSMEG_3765, are induced on exposure to acid-nitrosative stress. Both genes are annotated as TetR transcriptional regulators, a family of proteins that regulate a wide range of cellular activities, including multidrug resistance, carbon catabolism and virulence. Here, we demonstrate that MSMEG_3765 is co-transcribed with the upstream genes MSMEG_3762 and MSMEG_3763, encoding efflux pump components. RTq-PCR and GFP-reporter assays showed that the MSMEG_3762/63/65 gene cluster, and the orthologous region in M. tuberculosis (Rv1687c/86c/85c), was up-regulated in a MSMEG_3765 null mutant, suggesting that MSMEG_3765 acts as a repressor, typical of this family of regulators. We further defined the MSMEG_3765 regulon using genome-wide transcriptional profiling and used reporter assays to confirm that the MSMEG_3762/63/65 promoter was induced under acid-nitrosative stress. A putative 36 bp regulatory motif was identified upstream of the gene clusters in both M. smegmatis and M. tuberculosis and purified recombinant MSMEG_3765 protein was found to bind to DNA fragments containing this motif from both M. smegmatis and M. tuberculosis upstream regulatory regions. These results suggest that the TetR repressor MSMEG_3765/Rv1685c controls expression of an efflux pump with an, as yet, undefined role in the mycobacterial response to acid-nitrosative stress. Frontiers Media S.A. 2017-10-23 /pmc/articles/PMC5660060/ /pubmed/29109706 http://dx.doi.org/10.3389/fmicb.2017.02039 Text en Copyright © 2017 Perrone, De Siena, Muscariello, Kendall, Waddell and Sacco. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Perrone, Filomena
De Siena, Barbara
Muscariello, Lidia
Kendall, Sharon L.
Waddell, Simon J.
Sacco, Margherita
A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title_full A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title_fullStr A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title_full_unstemmed A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title_short A Novel TetR-Like Transcriptional Regulator Is Induced in Acid-Nitrosative Stress and Controls Expression of an Efflux Pump in Mycobacteria
title_sort novel tetr-like transcriptional regulator is induced in acid-nitrosative stress and controls expression of an efflux pump in mycobacteria
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5660060/
https://www.ncbi.nlm.nih.gov/pubmed/29109706
http://dx.doi.org/10.3389/fmicb.2017.02039
work_keys_str_mv AT perronefilomena anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT desienabarbara anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT muscariellolidia anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT kendallsharonl anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT waddellsimonj anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT saccomargherita anoveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT perronefilomena noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT desienabarbara noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT muscariellolidia noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT kendallsharonl noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT waddellsimonj noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria
AT saccomargherita noveltetrliketranscriptionalregulatorisinducedinacidnitrosativestressandcontrolsexpressionofaneffluxpumpinmycobacteria