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Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata

In this work, we used comparative transcriptomics to identify regulatory outliers (ROs) in the human pathogen Candida glabrata. ROs are genes that have very different expression patterns compared to their orthologs in other species. From comparative transcriptome analyses of the response of eight ye...

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Autores principales: Benchouaia, Médine, Ripoche, Hugues, Sissoko, Mariam, Thiébaut, Antonin, Merhej, Jawad, Delaveau, Thierry, Fasseu, Laure, Benaissa, Sabrina, Lorieux, Geneviève, Jourdren, Laurent, Le Crom, Stéphane, Lelandais, Gaëlle, Corel, Eduardo, Devaux, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6250833/
https://www.ncbi.nlm.nih.gov/pubmed/30505294
http://dx.doi.org/10.3389/fmicb.2018.02689
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author Benchouaia, Médine
Ripoche, Hugues
Sissoko, Mariam
Thiébaut, Antonin
Merhej, Jawad
Delaveau, Thierry
Fasseu, Laure
Benaissa, Sabrina
Lorieux, Geneviève
Jourdren, Laurent
Le Crom, Stéphane
Lelandais, Gaëlle
Corel, Eduardo
Devaux, Frédéric
author_facet Benchouaia, Médine
Ripoche, Hugues
Sissoko, Mariam
Thiébaut, Antonin
Merhej, Jawad
Delaveau, Thierry
Fasseu, Laure
Benaissa, Sabrina
Lorieux, Geneviève
Jourdren, Laurent
Le Crom, Stéphane
Lelandais, Gaëlle
Corel, Eduardo
Devaux, Frédéric
author_sort Benchouaia, Médine
collection PubMed
description In this work, we used comparative transcriptomics to identify regulatory outliers (ROs) in the human pathogen Candida glabrata. ROs are genes that have very different expression patterns compared to their orthologs in other species. From comparative transcriptome analyses of the response of eight yeast species to toxic doses of selenite, a pleiotropic stress inducer, we identified 38 ROs in C. glabrata. Using transcriptome analyses of C. glabrata response to five different stresses, we pointed out five ROs which were more particularly responsive to iron starvation, a process which is very important for C. glabrata virulence. Global chromatin Immunoprecipitation and gene profiling analyses showed that four of these genes are actually new targets of the iron starvation responsive Aft2 transcription factor in C. glabrata. Two of them (HBS1 and DOM34b) are required for C. glabrata optimal growth in iron limited conditions. In S. cerevisiae, the orthologs of these two genes are involved in ribosome rescue by the NO GO decay (NGD) pathway. Hence, our results suggest a specific contribution of NGD co-factors to the C. glabrata adaptation to iron starvation.
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spelling pubmed-62508332018-11-30 Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata Benchouaia, Médine Ripoche, Hugues Sissoko, Mariam Thiébaut, Antonin Merhej, Jawad Delaveau, Thierry Fasseu, Laure Benaissa, Sabrina Lorieux, Geneviève Jourdren, Laurent Le Crom, Stéphane Lelandais, Gaëlle Corel, Eduardo Devaux, Frédéric Front Microbiol Microbiology In this work, we used comparative transcriptomics to identify regulatory outliers (ROs) in the human pathogen Candida glabrata. ROs are genes that have very different expression patterns compared to their orthologs in other species. From comparative transcriptome analyses of the response of eight yeast species to toxic doses of selenite, a pleiotropic stress inducer, we identified 38 ROs in C. glabrata. Using transcriptome analyses of C. glabrata response to five different stresses, we pointed out five ROs which were more particularly responsive to iron starvation, a process which is very important for C. glabrata virulence. Global chromatin Immunoprecipitation and gene profiling analyses showed that four of these genes are actually new targets of the iron starvation responsive Aft2 transcription factor in C. glabrata. Two of them (HBS1 and DOM34b) are required for C. glabrata optimal growth in iron limited conditions. In S. cerevisiae, the orthologs of these two genes are involved in ribosome rescue by the NO GO decay (NGD) pathway. Hence, our results suggest a specific contribution of NGD co-factors to the C. glabrata adaptation to iron starvation. Frontiers Media S.A. 2018-11-16 /pmc/articles/PMC6250833/ /pubmed/30505294 http://dx.doi.org/10.3389/fmicb.2018.02689 Text en Copyright © 2018 Benchouaia, Ripoche, Sissoko, Thiébaut, Merhej, Delaveau, Fasseu, Benaissa, Lorieux, Jourdren, Le Crom, Lelandais, Corel and Devaux. 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
Benchouaia, Médine
Ripoche, Hugues
Sissoko, Mariam
Thiébaut, Antonin
Merhej, Jawad
Delaveau, Thierry
Fasseu, Laure
Benaissa, Sabrina
Lorieux, Geneviève
Jourdren, Laurent
Le Crom, Stéphane
Lelandais, Gaëlle
Corel, Eduardo
Devaux, Frédéric
Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title_full Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title_fullStr Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title_full_unstemmed Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title_short Comparative Transcriptomics Highlights New Features of the Iron Starvation Response in the Human Pathogen Candida glabrata
title_sort comparative transcriptomics highlights new features of the iron starvation response in the human pathogen candida glabrata
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6250833/
https://www.ncbi.nlm.nih.gov/pubmed/30505294
http://dx.doi.org/10.3389/fmicb.2018.02689
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