Author:
Simmons James R.,An Ran,Amankwaa Bright,Zayac Shannon,Kemp Justin,Labrador Mariano
Abstract
AbstractChromatin insulators are responsible for mediating long-range interactions between enhancers and promoters throughout the genome and align with the boundaries of topologically associating domains (TADs). Here, we demonstrate an interaction between proteins that associate with thegypsyinsulator and the phosphorylated histone variant H2Av (γH2Av), a marker of DNA double strand breaks.Gypsyinsulator components colocalize with γH2Av throughout the genome. Mutation of insulator components prevents stable H2Av phosphorylation in polytene chromatin. Phosphatase inhibition strengthens the association between insulator components and γH2Av and rescues γH2Av localization in insulator mutants. We also show that γH2Av is a component of insulator bodies, and that phosphatase activity is required for insulator body dissolution after recovery from osmotic stress. We further demonstrate a tight association between γH2Av and TAD boundaries. Together, our results indicate a novel mechanism linking insulator function with a histone H2A variant and with genome stability.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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