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DNA修复内切核酸酶Mus81在无外源性损伤的情况下促进快速DNA复制。

The DNA repair endonuclease Mus81 facilitates fast DNA replication in the absence of exogenous damage.

作者信息

Fu Haiqing, Martin Melvenia M, Regairaz Marie, Huang Liang, You Yang, Lin Chi-Mei, Ryan Michael, Kim RyangGuk, Shimura Tsutomu, Pommier Yves, Aladjem Mirit I

机构信息

Developmental Therapeutics Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

InSilico Solutions, 11781 Lee Jackson Highway, Fairfax, Virginia 22033, USA.

出版信息

Nat Commun. 2015 Apr 16;6:6746. doi: 10.1038/ncomms7746.

Abstract

The Mus81 endonuclease resolves recombination intermediates and mediates cellular responses to exogenous replicative stress. Here, we show that Mus81 also regulates the rate of DNA replication during normal growth by promoting replication fork progression while reducing the frequency of replication initiation events. In the absence of Mus81 endonuclease activity, DNA synthesis is slowed and replication initiation events are more frequent. In addition, Mus81-deficient cells fail to recover from exposure to low doses of replication inhibitors and cell viability is dependent on the XPF endonuclease. Despite an increase in replication initiation frequency, cells lacking Mus81 use the same pool of replication origins as Mus81-expressing cells. Therefore, decelerated DNA replication in Mus81-deficient cells does not initiate from cryptic or latent origins not used during normal growth. These results indicate that Mus81 plays a key role in determining the rate of DNA replication without activating a novel group of replication origins.

摘要

Mus81核酸内切酶可解析重组中间体并介导细胞对外源复制应激的反应。在此,我们表明Mus81在正常生长过程中也通过促进复制叉前进同时减少复制起始事件的频率来调节DNA复制速率。在缺乏Mus81核酸内切酶活性的情况下,DNA合成减慢且复制起始事件更为频繁。此外,缺乏Mus81的细胞在暴露于低剂量复制抑制剂后无法恢复,细胞活力依赖于XPF核酸内切酶。尽管复制起始频率增加,但缺乏Mus81的细胞与表达Mus81的细胞使用相同的复制起始点库。因此,Mus81缺陷细胞中DNA复制减速并非源于正常生长期间未使用的隐匿或潜在起始点。这些结果表明,Mus81在决定DNA复制速率方面起着关键作用,而无需激活一组新的复制起始点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17f1/4400873/a18f672ffac4/nihms-667413-f0001.jpg

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