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PMID: 22484486 已发表 · epublish 英语

Increased mobility of double-strand breaks requires Mec1, Rad9 and the homologous recombination machinery.

Nature cell biology ·第 14 卷 ·第 5 期 ·2012-06-29

Dion Vincent, Kalck Véronique, Horigome Chihiro, Towbin Benjamin D, Gasser Susan M

摘要

Chromatin mobility is thought to facilitate homology search during homologous recombination and to shift damage either towards or away from specialized repair compartments. However, unconstrained mobility of double-strand breaks could also promote deleterious chromosomal translocations. Here we use live time-lapse fluorescence microscopy to track the mobility of damaged DNA in budding yeast. We found that a Rad52-YFP focus formed at an irreparable double-strand break moves in a larger subnuclear volume than the undamaged locus. In contrast, Rad52-YFP bound at damage arising from a protein-DNA adduct shows no increase in movement. Mutant analysis shows that enhanced double-strand-break mobility requires Rad51, the ATPase activity of Rad54, the ATR homologue Mec1 and the DNA-damage-response mediator Rad9. Consistent with a role for movement in the homology-search step of homologous recombination, we show that recombination intermediates take longer to form in cells lacking Rad9.

文献信息
期刊
Nature cell biology
期刊简称
Nat Cell Biol
发表日期
2012-06-29
收录日期
2012-05-04
更新日期
2012-05-04
语言
英语
国家/地区
England
NLM ID
100890575
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