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A histone H3K36 chromatin switch coordinates DNA double-strand break repair pathway choice

Authors :
Sandra Codlin
Rachel S. Deegan
Eric J. Bernhard
Carol Walker
Lakxmi Subramanian
Robin C. Allshire
Elizabeth Blaikley
Jürg Bähler
Sovan Sarkar
Chen Chun Pai
Csenge Gal
Simon K. Whitehall
Lydia Hulme
Timothy C. Humphrey
Publication Year :
2016
Publisher :
Nature Publishing Group, 2016.

Abstract

DNA double-strand break (DSB) repair is a highly regulated process performed predominantly by non-homologous end joining (NHEJ) or homologous recombination (HR) pathways. How these pathways are coordinated in the context of chromatin is unclear. Here we uncover a role for histone H3K36 modification in regulating DSB repair pathway choice in fission yeast. We find Set2-dependent H3K36 methylation reduces chromatin accessibility, reduces resection and promotes NHEJ, while antagonistic Gcn5-dependent H3K36 acetylation increases chromatin accessibility, increases resection and promotes HR. Accordingly, loss of Set2 increases H3K36Ac, chromatin accessibility and resection, while Gcn5 loss results in the opposite phenotypes following DSB induction. Further, H3K36 modification is cell cycle regulated with Set2-dependent H3K36 methylation peaking in G1 when NHEJ occurs, while Gcn5-dependent H3K36 acetylation peaks in S/G2 when HR prevails. These findings support an H3K36 chromatin switch in regulating DSB repair pathway choice.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....73d03e6c0fd32470e376a74182546202