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The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter

The ability of pathogens to perceive environmental conditions and modulate gene expression accordingly is a crucial feature for bacterial survival. In this respect, the heat-shock response, a universal cellular response, allows cells to adapt to hostile environmental conditions and to survive during...

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Autores principales: Pepe, Simona, Pinatel, Eva, Fiore, Elisabetta, Puccio, Simone, Peano, Clelia, Brignoli, Tarcisio, Vannini, Andrea, Danielli, Alberto, Scarlato, Vincenzo, Roncarati, Davide
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6102357/
https://www.ncbi.nlm.nih.gov/pubmed/30154784
http://dx.doi.org/10.3389/fmicb.2018.01887
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author Pepe, Simona
Pinatel, Eva
Fiore, Elisabetta
Puccio, Simone
Peano, Clelia
Brignoli, Tarcisio
Vannini, Andrea
Danielli, Alberto
Scarlato, Vincenzo
Roncarati, Davide
author_facet Pepe, Simona
Pinatel, Eva
Fiore, Elisabetta
Puccio, Simone
Peano, Clelia
Brignoli, Tarcisio
Vannini, Andrea
Danielli, Alberto
Scarlato, Vincenzo
Roncarati, Davide
author_sort Pepe, Simona
collection PubMed
description The ability of pathogens to perceive environmental conditions and modulate gene expression accordingly is a crucial feature for bacterial survival. In this respect, the heat-shock response, a universal cellular response, allows cells to adapt to hostile environmental conditions and to survive during stress. In the major human pathogen Helicobacter pylori the expression of chaperone-encoding operons is under control of two auto-regulated transcriptional repressors, HrcA and HspR, with the latter acting as the master regulator of the regulatory circuit. To further characterize the HspR regulon in H. pylori, we used global transcriptome analysis (RNA-sequencing) in combination with Chromatin Immunoprecipitation coupled with deep sequencing (ChIP-sequencing) of HspR genomic binding sites. Intriguingly, these analyses showed that HspR is involved in the regulation of different crucial cellular functions through a limited number of genomic binding sites. Moreover, we further characterized HspR-DNA interactions through hydroxyl-radical footprinting assays. This analysis in combination with a nucleotide sequence alignment of HspR binding sites, revealed a peculiar pattern of DNA protection and highlighted sequence conservation with the HAIR motif (an HspR-associated inverted repeat of Streptomyces spp.). Site-directed mutagenesis demonstrated that the HAIR motif is fundamental for HspR binding and that additional nucleotide determinants flanking the HAIR motif are required for complete binding of HspR to its operator sequence spanning over 70 bp of DNA. This finding is compatible with a model in which possibly a dimer of HspR recognizes the HAIR motif overlapping its promoter for binding and in turn cooperatively recruits two additional dimers on both sides of the HAIR motif.
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spelling pubmed-61023572018-08-28 The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter Pepe, Simona Pinatel, Eva Fiore, Elisabetta Puccio, Simone Peano, Clelia Brignoli, Tarcisio Vannini, Andrea Danielli, Alberto Scarlato, Vincenzo Roncarati, Davide Front Microbiol Microbiology The ability of pathogens to perceive environmental conditions and modulate gene expression accordingly is a crucial feature for bacterial survival. In this respect, the heat-shock response, a universal cellular response, allows cells to adapt to hostile environmental conditions and to survive during stress. In the major human pathogen Helicobacter pylori the expression of chaperone-encoding operons is under control of two auto-regulated transcriptional repressors, HrcA and HspR, with the latter acting as the master regulator of the regulatory circuit. To further characterize the HspR regulon in H. pylori, we used global transcriptome analysis (RNA-sequencing) in combination with Chromatin Immunoprecipitation coupled with deep sequencing (ChIP-sequencing) of HspR genomic binding sites. Intriguingly, these analyses showed that HspR is involved in the regulation of different crucial cellular functions through a limited number of genomic binding sites. Moreover, we further characterized HspR-DNA interactions through hydroxyl-radical footprinting assays. This analysis in combination with a nucleotide sequence alignment of HspR binding sites, revealed a peculiar pattern of DNA protection and highlighted sequence conservation with the HAIR motif (an HspR-associated inverted repeat of Streptomyces spp.). Site-directed mutagenesis demonstrated that the HAIR motif is fundamental for HspR binding and that additional nucleotide determinants flanking the HAIR motif are required for complete binding of HspR to its operator sequence spanning over 70 bp of DNA. This finding is compatible with a model in which possibly a dimer of HspR recognizes the HAIR motif overlapping its promoter for binding and in turn cooperatively recruits two additional dimers on both sides of the HAIR motif. Frontiers Media S.A. 2018-08-14 /pmc/articles/PMC6102357/ /pubmed/30154784 http://dx.doi.org/10.3389/fmicb.2018.01887 Text en Copyright © 2018 Pepe, Pinatel, Fiore, Puccio, Peano, Brignoli, Vannini, Danielli, Scarlato and Roncarati. 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) and the copyright owner(s) 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
Pepe, Simona
Pinatel, Eva
Fiore, Elisabetta
Puccio, Simone
Peano, Clelia
Brignoli, Tarcisio
Vannini, Andrea
Danielli, Alberto
Scarlato, Vincenzo
Roncarati, Davide
The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title_full The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title_fullStr The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title_full_unstemmed The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title_short The Helicobacter pylori Heat-Shock Repressor HspR: Definition of Its Direct Regulon and Characterization of the Cooperative DNA-Binding Mechanism on Its Own Promoter
title_sort helicobacter pylori heat-shock repressor hspr: definition of its direct regulon and characterization of the cooperative dna-binding mechanism on its own promoter
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6102357/
https://www.ncbi.nlm.nih.gov/pubmed/30154784
http://dx.doi.org/10.3389/fmicb.2018.01887
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