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Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase

BACKGROUND: Replication initiation at origins of replication in the yeast genome takes place on chromatin as a template, raising the question how histone modifications, for instance histone acetylation, influence origin firing. Initiation requires binding of the replication initiator, the Origin Rec...

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Autores principales: Weber, Jan M, Irlbacher, Horst, Ehrenhofer-Murray, Ann E
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2585588/
https://www.ncbi.nlm.nih.gov/pubmed/18990212
http://dx.doi.org/10.1186/1471-2199-9-100
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author Weber, Jan M
Irlbacher, Horst
Ehrenhofer-Murray, Ann E
author_facet Weber, Jan M
Irlbacher, Horst
Ehrenhofer-Murray, Ann E
author_sort Weber, Jan M
collection PubMed
description BACKGROUND: Replication initiation at origins of replication in the yeast genome takes place on chromatin as a template, raising the question how histone modifications, for instance histone acetylation, influence origin firing. Initiation requires binding of the replication initiator, the Origin Recognition Complex (ORC), to a consensus sequence within origins. In addition, other proteins bind to recognition sites in the vicinity of ORC and support initiation. In previous work, we identified Sum1 as an origin-binding protein that contributes to efficient replication initiation. Sum1 is part of the Sum1/Rfm1/Hst1 complex that represses meiotic genes during vegetative growth via histone deacetylation by the histone deacetylase (HDAC) Hst1. RESULTS: In this study, we investigated how Sum1 affected replication initiation. We found that it functioned in initiation as a component of the Sum1/Rfm1/Hst1 complex, implying a role for histone deacetylation in origin activity. We identified several origins in the yeast genome whose activity depended on both Sum1 and Hst1. Importantly, sum1Δ or hst1Δ caused a significant increase in histone H4 lysine 5 (H4 K5) acetylation levels, but not other H4 acetylation sites, at those origins. Furthermore, mutation of lysines to glutamines in the H4 tail, which imitates the constantly acetylated state, resulted in a reduction of origin activity comparable to that in the absence of Hst1, showing that deacetylation of H4 was important for full initiation capacity of these origins. CONCLUSION: Taken together, our results demonstrate a role for histone deacetylation in origin activity and reveal a novel aspect of origin regulation by chromatin. These results suggest recruitment of the Sum1/Rfm1/Hst1 complex to a number of yeast origins, where Hst1 deacetylated H4 K5.
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spelling pubmed-25855882008-11-21 Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase Weber, Jan M Irlbacher, Horst Ehrenhofer-Murray, Ann E BMC Mol Biol Research Article BACKGROUND: Replication initiation at origins of replication in the yeast genome takes place on chromatin as a template, raising the question how histone modifications, for instance histone acetylation, influence origin firing. Initiation requires binding of the replication initiator, the Origin Recognition Complex (ORC), to a consensus sequence within origins. In addition, other proteins bind to recognition sites in the vicinity of ORC and support initiation. In previous work, we identified Sum1 as an origin-binding protein that contributes to efficient replication initiation. Sum1 is part of the Sum1/Rfm1/Hst1 complex that represses meiotic genes during vegetative growth via histone deacetylation by the histone deacetylase (HDAC) Hst1. RESULTS: In this study, we investigated how Sum1 affected replication initiation. We found that it functioned in initiation as a component of the Sum1/Rfm1/Hst1 complex, implying a role for histone deacetylation in origin activity. We identified several origins in the yeast genome whose activity depended on both Sum1 and Hst1. Importantly, sum1Δ or hst1Δ caused a significant increase in histone H4 lysine 5 (H4 K5) acetylation levels, but not other H4 acetylation sites, at those origins. Furthermore, mutation of lysines to glutamines in the H4 tail, which imitates the constantly acetylated state, resulted in a reduction of origin activity comparable to that in the absence of Hst1, showing that deacetylation of H4 was important for full initiation capacity of these origins. CONCLUSION: Taken together, our results demonstrate a role for histone deacetylation in origin activity and reveal a novel aspect of origin regulation by chromatin. These results suggest recruitment of the Sum1/Rfm1/Hst1 complex to a number of yeast origins, where Hst1 deacetylated H4 K5. BioMed Central 2008-11-06 /pmc/articles/PMC2585588/ /pubmed/18990212 http://dx.doi.org/10.1186/1471-2199-9-100 Text en Copyright © 2008 Weber et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Weber, Jan M
Irlbacher, Horst
Ehrenhofer-Murray, Ann E
Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title_full Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title_fullStr Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title_full_unstemmed Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title_short Control of replication initiation by the Sum1/Rfm1/Hst1 histone deacetylase
title_sort control of replication initiation by the sum1/rfm1/hst1 histone deacetylase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2585588/
https://www.ncbi.nlm.nih.gov/pubmed/18990212
http://dx.doi.org/10.1186/1471-2199-9-100
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