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Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis

Multi-drug tolerance is a key phenotypic property that complicates the sterilization of mammals infected with Mycobacterium tuberculosis. Previous studies have established that iniBAC, an operon that confers multi-drug tolerance to M. bovis BCG through an associated pump-like activity, is induced by...

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Autores principales: Colangeli, Roberto, Helb, Danica, Vilchèze, Catherine, Hazbón, Manzour Hernando, Lee, Chee-Gun, Safi, Hassan, Sayers, Brendan, Sardone, Irene, Jones, Marcus B, Fleischmann, Robert D, Peterson, Scott N, Jacobs, William R, Alland, David
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1894825/
https://www.ncbi.nlm.nih.gov/pubmed/17590082
http://dx.doi.org/10.1371/journal.ppat.0030087
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author Colangeli, Roberto
Helb, Danica
Vilchèze, Catherine
Hazbón, Manzour Hernando
Lee, Chee-Gun
Safi, Hassan
Sayers, Brendan
Sardone, Irene
Jones, Marcus B
Fleischmann, Robert D
Peterson, Scott N
Jacobs, William R
Alland, David
author_facet Colangeli, Roberto
Helb, Danica
Vilchèze, Catherine
Hazbón, Manzour Hernando
Lee, Chee-Gun
Safi, Hassan
Sayers, Brendan
Sardone, Irene
Jones, Marcus B
Fleischmann, Robert D
Peterson, Scott N
Jacobs, William R
Alland, David
author_sort Colangeli, Roberto
collection PubMed
description Multi-drug tolerance is a key phenotypic property that complicates the sterilization of mammals infected with Mycobacterium tuberculosis. Previous studies have established that iniBAC, an operon that confers multi-drug tolerance to M. bovis BCG through an associated pump-like activity, is induced by the antibiotics isoniazid (INH) and ethambutol (EMB). An improved understanding of the functional role of antibiotic-induced genes and the regulation of drug tolerance may be gained by studying the factors that regulate antibiotic-mediated gene expression. An M. smegmatis strain containing a lacZ gene fused to the promoter of M. tuberculosis iniBAC (P(iniBAC)) was subjected to transposon mutagenesis. Mutants with constitutive expression and increased EMB-mediated induction of P(iniBAC)::lacZ mapped to the lsr2 gene (MSMEG6065), a small basic protein of unknown function that is highly conserved among mycobacteria. These mutants had a marked change in colony morphology and generated a new polar lipid. Complementation with multi-copy M. tuberculosis lsr2 (Rv3597c) returned P(iniBAC) expression to baseline, reversed the observed morphological and lipid changes, and repressed P(iniBAC) induction by EMB to below that of the control M. smegmatis strain. Microarray analysis of an lsr2 knockout confirmed upregulation of M. smegmatis iniA and demonstrated upregulation of genes involved in cell wall and metabolic functions. Fully 121 of 584 genes induced by EMB treatment in wild-type M. smegmatis were upregulated (“hyperinduced”) to even higher levels by EMB in the M. smegmatis lsr2 knockout. The most highly upregulated genes and gene clusters had adenine-thymine (AT)–rich 5-prime untranslated regions. In M. tuberculosis, overexpression of lsr2 repressed INH-mediated induction of all three iniBAC genes, as well as another annotated pump, efpA. The low molecular weight and basic properties of Lsr2 (pI 10.69) suggested that it was a histone-like protein, although it did not exhibit sequence homology with other proteins in this class. Consistent with other histone-like proteins, Lsr2 bound DNA with a preference for circular DNA, forming large oligomers, inhibited DNase I activity, and introduced a modest degree of supercoiling into relaxed plasmids. Lsr2 also inhibited in vitro transcription and topoisomerase I activity. Lsr2 represents a novel class of histone-like proteins that inhibit a wide variety of DNA-interacting enzymes. Lsr2 appears to regulate several important pathways in mycobacteria by preferentially binding to AT-rich sequences, including genes induced by antibiotics and those associated with inducible multi-drug tolerance. An improved understanding of the role of lsr2 may provide important insights into the mechanisms of action of antibiotics and the way that mycobacteria adapt to stresses such as antibiotic treatment.
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spelling pubmed-18948252007-06-30 Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis Colangeli, Roberto Helb, Danica Vilchèze, Catherine Hazbón, Manzour Hernando Lee, Chee-Gun Safi, Hassan Sayers, Brendan Sardone, Irene Jones, Marcus B Fleischmann, Robert D Peterson, Scott N Jacobs, William R Alland, David PLoS Pathog Research Article Multi-drug tolerance is a key phenotypic property that complicates the sterilization of mammals infected with Mycobacterium tuberculosis. Previous studies have established that iniBAC, an operon that confers multi-drug tolerance to M. bovis BCG through an associated pump-like activity, is induced by the antibiotics isoniazid (INH) and ethambutol (EMB). An improved understanding of the functional role of antibiotic-induced genes and the regulation of drug tolerance may be gained by studying the factors that regulate antibiotic-mediated gene expression. An M. smegmatis strain containing a lacZ gene fused to the promoter of M. tuberculosis iniBAC (P(iniBAC)) was subjected to transposon mutagenesis. Mutants with constitutive expression and increased EMB-mediated induction of P(iniBAC)::lacZ mapped to the lsr2 gene (MSMEG6065), a small basic protein of unknown function that is highly conserved among mycobacteria. These mutants had a marked change in colony morphology and generated a new polar lipid. Complementation with multi-copy M. tuberculosis lsr2 (Rv3597c) returned P(iniBAC) expression to baseline, reversed the observed morphological and lipid changes, and repressed P(iniBAC) induction by EMB to below that of the control M. smegmatis strain. Microarray analysis of an lsr2 knockout confirmed upregulation of M. smegmatis iniA and demonstrated upregulation of genes involved in cell wall and metabolic functions. Fully 121 of 584 genes induced by EMB treatment in wild-type M. smegmatis were upregulated (“hyperinduced”) to even higher levels by EMB in the M. smegmatis lsr2 knockout. The most highly upregulated genes and gene clusters had adenine-thymine (AT)–rich 5-prime untranslated regions. In M. tuberculosis, overexpression of lsr2 repressed INH-mediated induction of all three iniBAC genes, as well as another annotated pump, efpA. The low molecular weight and basic properties of Lsr2 (pI 10.69) suggested that it was a histone-like protein, although it did not exhibit sequence homology with other proteins in this class. Consistent with other histone-like proteins, Lsr2 bound DNA with a preference for circular DNA, forming large oligomers, inhibited DNase I activity, and introduced a modest degree of supercoiling into relaxed plasmids. Lsr2 also inhibited in vitro transcription and topoisomerase I activity. Lsr2 represents a novel class of histone-like proteins that inhibit a wide variety of DNA-interacting enzymes. Lsr2 appears to regulate several important pathways in mycobacteria by preferentially binding to AT-rich sequences, including genes induced by antibiotics and those associated with inducible multi-drug tolerance. An improved understanding of the role of lsr2 may provide important insights into the mechanisms of action of antibiotics and the way that mycobacteria adapt to stresses such as antibiotic treatment. Public Library of Science 2007-06 2007-06-22 /pmc/articles/PMC1894825/ /pubmed/17590082 http://dx.doi.org/10.1371/journal.ppat.0030087 Text en © 2007 Colangeli 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
Colangeli, Roberto
Helb, Danica
Vilchèze, Catherine
Hazbón, Manzour Hernando
Lee, Chee-Gun
Safi, Hassan
Sayers, Brendan
Sardone, Irene
Jones, Marcus B
Fleischmann, Robert D
Peterson, Scott N
Jacobs, William R
Alland, David
Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title_full Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title_fullStr Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title_full_unstemmed Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title_short Transcriptional Regulation of Multi-Drug Tolerance and Antibiotic-Induced Responses by the Histone-Like Protein Lsr2 in M. tuberculosis
title_sort transcriptional regulation of multi-drug tolerance and antibiotic-induced responses by the histone-like protein lsr2 in m. tuberculosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1894825/
https://www.ncbi.nlm.nih.gov/pubmed/17590082
http://dx.doi.org/10.1371/journal.ppat.0030087
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