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染色质组装因子1通过对抗RecQ型解旋酶Rqh1介导的D环解体,促进复制叉处依赖Rad51的模板转换。

The chromatin assembly factor 1 promotes Rad51-dependent template switches at replication forks by counteracting D-loop disassembly by the RecQ-type helicase Rqh1.

作者信息

Pietrobon Violena, Fréon Karine, Hardy Julien, Costes Audrey, Iraqui Ismail, Ochsenbein Françoise, Lambert Sarah A E

机构信息

Institut Curie, Centre de Recherche, Orsay, France; Centre national de la Recherche Scientifique, UMR3348, Centre Universitaire, Orsay, France.

Commissariat à l'Energie Atomique, iBiTec-S, Service de Biologie Intégrative et de Génétique Moléculaire, Gif-sur-Yvette, France.

出版信息

PLoS Biol. 2014 Oct 14;12(10):e1001968. doi: 10.1371/journal.pbio.1001968. eCollection 2014 Oct.

Abstract

At blocked replication forks, homologous recombination mediates the nascent strands to switch template in order to ensure replication restart, but faulty template switches underlie genome rearrangements in cancer cells and genomic disorders. Recombination occurs within DNA packaged into chromatin that must first be relaxed and then restored when recombination is completed. The chromatin assembly factor 1, CAF-1, is a histone H3-H4 chaperone involved in DNA synthesis-coupled chromatin assembly during DNA replication and DNA repair. We reveal a novel chromatin factor-dependent step during replication-coupled DNA repair: Fission yeast CAF-1 promotes Rad51-dependent template switches at replication forks, independently of the postreplication repair pathway. We used a physical assay that allows the analysis of the individual steps of template switch, from the recruitment of recombination factors to the formation of joint molecules, combined with a quantitative measure of the resulting rearrangements. We reveal functional and physical interplays between CAF-1 and the RecQ-helicase Rqh1, the BLM homologue, mutations in which cause Bloom's syndrome, a human disease associating genome instability with cancer predisposition. We establish that CAF-1 promotes template switch by counteracting D-loop disassembly by Rqh1. Consequently, the likelihood of faulty template switches is controlled by antagonistic activities of CAF-1 and Rqh1 in the stability of the D-loop. D-loop stabilization requires the ability of CAF-1 to interact with PCNA and is thus linked to the DNA synthesis step. We propose that CAF-1 plays a regulatory role during template switch by assembling chromatin on the D-loop and thereby impacting the resolution of the D-loop.

摘要

在受阻的复制叉处,同源重组介导新生链切换模板以确保复制重新启动,但错误的模板切换是癌细胞基因组重排和基因组疾病的基础。重组发生在包装成染色质的DNA内,染色质必须首先松弛,然后在重组完成时恢复。染色质组装因子1(CAF-1)是一种组蛋白H3-H4伴侣蛋白,参与DNA复制和DNA修复过程中与DNA合成偶联的染色质组装。我们揭示了复制偶联DNA修复过程中一个新的染色质因子依赖性步骤:裂殖酵母CAF-1在复制叉处促进Rad51依赖性模板切换,独立于复制后修复途径。我们使用了一种物理检测方法,该方法允许分析模板切换的各个步骤,从重组因子的募集到联合分子的形成,并结合对所得重排的定量测量。我们揭示了CAF-1与RecQ解旋酶Rqh1(BLM的同源物)之间的功能和物理相互作用,Rqh1的突变会导致布卢姆综合征,这是一种将基因组不稳定与癌症易感性相关联的人类疾病。我们确定CAF-1通过抵消Rqh1对D环的拆解来促进模板切换。因此,错误模板切换的可能性由CAF-1和Rqh1在D环稳定性方面的拮抗活性控制。D环的稳定需要CAF-1与增殖细胞核抗原(PCNA)相互作用的能力,因此与DNA合成步骤相关。我们提出,CAF-1在模板切换过程中通过在D环上组装染色质从而影响D环的分辨率发挥调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a71/4196752/9841db97fd52/pbio.1001968.g001.jpg

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