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Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast

Heterochromatin assembly in fission yeast depends on the Clr4 histone methyltransferase, which targets H3K9. We show that the histone deacetylase Sir2 is required for Clr4 activity at telomeres, but acts redundantly with Clr3 histone deacetylase to maintain centromeric heterochromatin. However, Sir2...

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Autores principales: Alper, Benjamin J, Job, Godwin, Yadav, Rajesh K, Shanker, Sreenath, Lowe, Brandon R, Partridge, Janet F
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3770337/
https://www.ncbi.nlm.nih.gov/pubmed/23771057
http://dx.doi.org/10.1038/emboj.2013.143
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author Alper, Benjamin J
Job, Godwin
Yadav, Rajesh K
Shanker, Sreenath
Lowe, Brandon R
Partridge, Janet F
author_facet Alper, Benjamin J
Job, Godwin
Yadav, Rajesh K
Shanker, Sreenath
Lowe, Brandon R
Partridge, Janet F
author_sort Alper, Benjamin J
collection PubMed
description Heterochromatin assembly in fission yeast depends on the Clr4 histone methyltransferase, which targets H3K9. We show that the histone deacetylase Sir2 is required for Clr4 activity at telomeres, but acts redundantly with Clr3 histone deacetylase to maintain centromeric heterochromatin. However, Sir2 is critical for Clr4 function during de novo centromeric heterochromatin assembly. We identified new targets of Sir2 and tested if their deacetylation is necessary for Clr4-mediated heterochromatin establishment. Sir2 preferentially deacetylates H4K16Ac and H3K4Ac, but mutation of these residues to mimic acetylation did not prevent Clr4-mediated heterochromatin establishment. Sir2 also deacetylates H3K9Ac and H3K14Ac. Strains bearing H3K9 or H3K14 mutations exhibit heterochromatin defects. H3K9 mutation blocks Clr4 function, but why H3K14 mutation impacts heterochromatin was not known. Here, we demonstrate that recruitment of Clr4 to centromeres is blocked by mutation of H3K14. We suggest that Sir2 deacetylates H3K14 to target Clr4 to centromeres. Further, we demonstrate that Sir2 is critical for de novo accumulation of H3K9me2 in RNAi-deficient cells. These analyses place Sir2 and H3K14 deacetylation upstream of Clr4 recruitment during heterochromatin assembly.
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spelling pubmed-37703372013-09-11 Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast Alper, Benjamin J Job, Godwin Yadav, Rajesh K Shanker, Sreenath Lowe, Brandon R Partridge, Janet F EMBO J Article Heterochromatin assembly in fission yeast depends on the Clr4 histone methyltransferase, which targets H3K9. We show that the histone deacetylase Sir2 is required for Clr4 activity at telomeres, but acts redundantly with Clr3 histone deacetylase to maintain centromeric heterochromatin. However, Sir2 is critical for Clr4 function during de novo centromeric heterochromatin assembly. We identified new targets of Sir2 and tested if their deacetylation is necessary for Clr4-mediated heterochromatin establishment. Sir2 preferentially deacetylates H4K16Ac and H3K4Ac, but mutation of these residues to mimic acetylation did not prevent Clr4-mediated heterochromatin establishment. Sir2 also deacetylates H3K9Ac and H3K14Ac. Strains bearing H3K9 or H3K14 mutations exhibit heterochromatin defects. H3K9 mutation blocks Clr4 function, but why H3K14 mutation impacts heterochromatin was not known. Here, we demonstrate that recruitment of Clr4 to centromeres is blocked by mutation of H3K14. We suggest that Sir2 deacetylates H3K14 to target Clr4 to centromeres. Further, we demonstrate that Sir2 is critical for de novo accumulation of H3K9me2 in RNAi-deficient cells. These analyses place Sir2 and H3K14 deacetylation upstream of Clr4 recruitment during heterochromatin assembly. European Molecular Biology Organization 2013-08-28 2013-06-14 /pmc/articles/PMC3770337/ /pubmed/23771057 http://dx.doi.org/10.1038/emboj.2013.143 Text en Copyright © 2013, European Molecular Biology Organization https://creativecommons.org/licenses/by/3.0/This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. To view a copy of this license, visit http://creativecommons.org/licenses/by/3.0/ (https://creativecommons.org/licenses/by/3.0/) .
spellingShingle Article
Alper, Benjamin J
Job, Godwin
Yadav, Rajesh K
Shanker, Sreenath
Lowe, Brandon R
Partridge, Janet F
Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title_full Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title_fullStr Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title_full_unstemmed Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title_short Sir2 is required for Clr4 to initiate centromeric heterochromatin assembly in fission yeast
title_sort sir2 is required for clr4 to initiate centromeric heterochromatin assembly in fission yeast
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3770337/
https://www.ncbi.nlm.nih.gov/pubmed/23771057
http://dx.doi.org/10.1038/emboj.2013.143
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