组蛋白H3
生物
DNA复制
原点识别复合体
染色体复制控制
复制因子C
遗传学
细胞生物学
组蛋白
组蛋白H2A
基因组不稳定性
组蛋白密码
真核细胞DNA复制
DNA
DNA损伤
作者
Hossein Davarinejad,Yi-Chun Huang,Benoit Mermaz,Chantal LeBlanc,Axel Poulet,Geoffrey Thomson,Valentin Joly,Marcelo A. Muñoz,Alexis Arvanitis-Vigneault,Devisree Valsakumar,Gonzalo H. Villarino,Alex H. Ross,Benjamin H. Rotstein,Emilio I. Alarcon,Joseph S. Brunzelle,Philipp Voigt,Jie Dong,Jean-François Couture,Yannick Jacob
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-03-18
卷期号:375 (6586): 1281-1286
被引量:12
标识
DOI:10.1126/science.abm5320
摘要
The tail of replication-dependent histone H3.1 varies from that of replication-independent H3.3 at the amino acid located at position 31 in plants and animals, but no function has been assigned to this residue to demonstrate a unique and conserved role for H3.1 during replication. We found that TONSOKU (TSK/TONSL), which rescues broken replication forks, specifically interacts with H3.1 via recognition of alanine 31 by its tetratricopeptide repeat domain. Our results indicate that genomic instability in the absence of ATXR5/ATXR6-catalyzed histone H3 lysine 27 monomethylation in plants depends on H3.1, TSK, and DNA polymerase theta (Pol θ). This work reveals an H3.1-specific function during replication and a common strategy used in multicellular eukaryotes for regulating post-replicative chromatin maturation and TSK, which relies on histone monomethyltransferases and reading of the H3.1 variant.
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