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H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly

The influence of mono-ubiquitylation of histone H2B (H2Bub) on transcription via nucleosome reassembly has been widely documented. Recently, it has also been shown that H2Bub promotes recovery from replication stress; however, the underling molecular mechanism remains unclear. Here, we show that H2B...

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Autores principales: Lin, Chia-Yeh, Wu, Meng-Ying, Gay, Sophie, Marjavaara, Lisette, Lai, Mong Sing, Hsiao, Wei-Chun, Hung, Shih-Hsun, Tseng, Hsin-Yi, Wright, Duncan Edward, Wang, Chen-Yi, Hsu, Guoo-Shyng W., Devys, Didier, Chabes, Andrei, Kao, Cheng-Fu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183429/
https://www.ncbi.nlm.nih.gov/pubmed/25275495
http://dx.doi.org/10.1371/journal.pgen.1004667
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author Lin, Chia-Yeh
Wu, Meng-Ying
Gay, Sophie
Marjavaara, Lisette
Lai, Mong Sing
Hsiao, Wei-Chun
Hung, Shih-Hsun
Tseng, Hsin-Yi
Wright, Duncan Edward
Wang, Chen-Yi
Hsu, Guoo-Shyng W.
Devys, Didier
Chabes, Andrei
Kao, Cheng-Fu
author_facet Lin, Chia-Yeh
Wu, Meng-Ying
Gay, Sophie
Marjavaara, Lisette
Lai, Mong Sing
Hsiao, Wei-Chun
Hung, Shih-Hsun
Tseng, Hsin-Yi
Wright, Duncan Edward
Wang, Chen-Yi
Hsu, Guoo-Shyng W.
Devys, Didier
Chabes, Andrei
Kao, Cheng-Fu
author_sort Lin, Chia-Yeh
collection PubMed
description The influence of mono-ubiquitylation of histone H2B (H2Bub) on transcription via nucleosome reassembly has been widely documented. Recently, it has also been shown that H2Bub promotes recovery from replication stress; however, the underling molecular mechanism remains unclear. Here, we show that H2B ubiquitylation coordinates activation of the intra-S replication checkpoint and chromatin re-assembly, in order to limit fork progression and DNA damage in the presence of replication stress. In particular, we show that the absence of H2Bub affects replication dynamics (enhanced fork progression and reduced origin firing), leading to γH2A accumulation and increased hydroxyurea sensitivity. Further genetic analysis indicates a role for H2Bub in transducing Rad53 phosphorylation. Concomitantly, we found that a change in replication dynamics is not due to a change in dNTP level, but is mediated by reduced Rad53 activation and destabilization of the RecQ helicase Sgs1 at the fork. Furthermore, we demonstrate that H2Bub facilitates the dissociation of the histone chaperone Asf1 from Rad53, and nucleosome reassembly behind the fork is compromised in cells lacking H2Bub. Taken together, these results indicate that the regulation of H2B ubiquitylation is a key event in the maintenance of genome stability, through coordination of intra-S checkpoint activation, chromatin assembly and replication fork progression.
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spelling pubmed-41834292014-10-07 H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly Lin, Chia-Yeh Wu, Meng-Ying Gay, Sophie Marjavaara, Lisette Lai, Mong Sing Hsiao, Wei-Chun Hung, Shih-Hsun Tseng, Hsin-Yi Wright, Duncan Edward Wang, Chen-Yi Hsu, Guoo-Shyng W. Devys, Didier Chabes, Andrei Kao, Cheng-Fu PLoS Genet Research Article The influence of mono-ubiquitylation of histone H2B (H2Bub) on transcription via nucleosome reassembly has been widely documented. Recently, it has also been shown that H2Bub promotes recovery from replication stress; however, the underling molecular mechanism remains unclear. Here, we show that H2B ubiquitylation coordinates activation of the intra-S replication checkpoint and chromatin re-assembly, in order to limit fork progression and DNA damage in the presence of replication stress. In particular, we show that the absence of H2Bub affects replication dynamics (enhanced fork progression and reduced origin firing), leading to γH2A accumulation and increased hydroxyurea sensitivity. Further genetic analysis indicates a role for H2Bub in transducing Rad53 phosphorylation. Concomitantly, we found that a change in replication dynamics is not due to a change in dNTP level, but is mediated by reduced Rad53 activation and destabilization of the RecQ helicase Sgs1 at the fork. Furthermore, we demonstrate that H2Bub facilitates the dissociation of the histone chaperone Asf1 from Rad53, and nucleosome reassembly behind the fork is compromised in cells lacking H2Bub. Taken together, these results indicate that the regulation of H2B ubiquitylation is a key event in the maintenance of genome stability, through coordination of intra-S checkpoint activation, chromatin assembly and replication fork progression. Public Library of Science 2014-10-02 /pmc/articles/PMC4183429/ /pubmed/25275495 http://dx.doi.org/10.1371/journal.pgen.1004667 Text en © 2014 Lin 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
Lin, Chia-Yeh
Wu, Meng-Ying
Gay, Sophie
Marjavaara, Lisette
Lai, Mong Sing
Hsiao, Wei-Chun
Hung, Shih-Hsun
Tseng, Hsin-Yi
Wright, Duncan Edward
Wang, Chen-Yi
Hsu, Guoo-Shyng W.
Devys, Didier
Chabes, Andrei
Kao, Cheng-Fu
H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title_full H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title_fullStr H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title_full_unstemmed H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title_short H2B Mono-ubiquitylation Facilitates Fork Stalling and Recovery during Replication Stress by Coordinating Rad53 Activation and Chromatin Assembly
title_sort h2b mono-ubiquitylation facilitates fork stalling and recovery during replication stress by coordinating rad53 activation and chromatin assembly
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183429/
https://www.ncbi.nlm.nih.gov/pubmed/25275495
http://dx.doi.org/10.1371/journal.pgen.1004667
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