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PMID: 15610743 已发表 · ppublish 英语

Control of sister chromatid recombination by histone H2AX.

Molecular cell ·第 16 卷 ·第 6 期 ·2005-02-10

Xie Anyong, Puget Nadine, Shim Inbo, Odate Shobu, Jarzyna Ingeborga, Bassing Craig H, Alt Frederick W, Scully Ralph

摘要

Histone H2AX has a role in suppressing genomic instability and cancer. However, the mechanisms by which it performs these functions are poorly understood. After DNA breakage, H2AX is phosphorylated on serine 139 in chromatin near the break. We show here that H2AX serine 139 enforces efficient homologous recombinational repair of a chromosomal double-strand break (DSB) by using the sister chromatid as a template. BRCA1, Rad51, and CHK2 contribute to recombinational repair, in part independently of H2AX. H2AX(-/-) cells show increased use of single-strand annealing, an error-prone deletional mechanism of DSB repair. Therefore, the chromatin response around a chromosomal DSB, in which H2AX serine 139 phosphorylation plays a central role, "shapes" the repair process in favor of potentially error-free interchromatid homologous recombination at the expense of error-prone repair. H2AX phosphorylation may help set up a favorable disposition between sister chromatids.

文献信息
期刊
Molecular cell
期刊简称
Mol Cell
发表日期
2005-02-10
收录日期
2004-12-21
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
9802571
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