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Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning

H2A.Z is an evolutionary conserved histone variant involved in transcriptional regulation, antisilencing, silencing, and genome stability. The mechanism(s) by which H2A.Z regulates these various biological functions remains poorly defined, in part due to the lack of knowledge regarding its physical...

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Autores principales: Guillemette, Benoît, Bataille, Alain R, Gévry, Nicolas, Adam, Maryse, Blanchette, Mathieu, Robert, François, Gaudreau, Luc
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1275524/
https://www.ncbi.nlm.nih.gov/pubmed/16248679
http://dx.doi.org/10.1371/journal.pbio.0030384
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author Guillemette, Benoît
Bataille, Alain R
Gévry, Nicolas
Adam, Maryse
Blanchette, Mathieu
Robert, François
Gaudreau, Luc
author_facet Guillemette, Benoît
Bataille, Alain R
Gévry, Nicolas
Adam, Maryse
Blanchette, Mathieu
Robert, François
Gaudreau, Luc
author_sort Guillemette, Benoît
collection PubMed
description H2A.Z is an evolutionary conserved histone variant involved in transcriptional regulation, antisilencing, silencing, and genome stability. The mechanism(s) by which H2A.Z regulates these various biological functions remains poorly defined, in part due to the lack of knowledge regarding its physical location along chromosomes and the bearing it has in regulating chromatin structure. Here we mapped H2A.Z across the yeast genome at an approximately 300-bp resolution, using chromatin immunoprecipitation combined with tiling microarrays. We have identified 4,862 small regions—typically one or two nucleosomes wide—decorated with H2A.Z. Those “Z loci” are predominantly found within specific nucleosomes in the promoter of inactive genes all across the genome. Furthermore, we have shown that H2A.Z can regulate nucleosome positioning at the GAL1 promoter. Within HZAD domains, the regions where H2A.Z shows an antisilencing function, H2A.Z is localized in a wider pattern, suggesting that the variant histone regulates a silencing and transcriptional activation via different mechanisms. Our data suggest that the incorporation of H2A.Z into specific promoter-bound nucleosomes configures chromatin structure to poise genes for transcriptional activation. The relevance of these findings to higher eukaryotes is discussed.
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spelling pubmed-12755242005-11-01 Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning Guillemette, Benoît Bataille, Alain R Gévry, Nicolas Adam, Maryse Blanchette, Mathieu Robert, François Gaudreau, Luc PLoS Biol Research Article H2A.Z is an evolutionary conserved histone variant involved in transcriptional regulation, antisilencing, silencing, and genome stability. The mechanism(s) by which H2A.Z regulates these various biological functions remains poorly defined, in part due to the lack of knowledge regarding its physical location along chromosomes and the bearing it has in regulating chromatin structure. Here we mapped H2A.Z across the yeast genome at an approximately 300-bp resolution, using chromatin immunoprecipitation combined with tiling microarrays. We have identified 4,862 small regions—typically one or two nucleosomes wide—decorated with H2A.Z. Those “Z loci” are predominantly found within specific nucleosomes in the promoter of inactive genes all across the genome. Furthermore, we have shown that H2A.Z can regulate nucleosome positioning at the GAL1 promoter. Within HZAD domains, the regions where H2A.Z shows an antisilencing function, H2A.Z is localized in a wider pattern, suggesting that the variant histone regulates a silencing and transcriptional activation via different mechanisms. Our data suggest that the incorporation of H2A.Z into specific promoter-bound nucleosomes configures chromatin structure to poise genes for transcriptional activation. The relevance of these findings to higher eukaryotes is discussed. Public Library of Science 2005-12 2005-11-01 /pmc/articles/PMC1275524/ /pubmed/16248679 http://dx.doi.org/10.1371/journal.pbio.0030384 Text en Copyright: © 2005 Guillemette 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
Guillemette, Benoît
Bataille, Alain R
Gévry, Nicolas
Adam, Maryse
Blanchette, Mathieu
Robert, François
Gaudreau, Luc
Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title_full Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title_fullStr Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title_full_unstemmed Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title_short Variant Histone H2A.Z Is Globally Localized to the Promoters of Inactive Yeast Genes and Regulates Nucleosome Positioning
title_sort variant histone h2a.z is globally localized to the promoters of inactive yeast genes and regulates nucleosome positioning
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1275524/
https://www.ncbi.nlm.nih.gov/pubmed/16248679
http://dx.doi.org/10.1371/journal.pbio.0030384
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