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酿酒酵母Ku70增强非同源末端连接修复,并作为易出错的DNA修复途径的屏障。

Saccharomyces cerevisiae Ku70 potentiates illegitimate DNA double-strand break repair and serves as a barrier to error-prone DNA repair pathways.

作者信息

Boulton S J, Jackson S P

机构信息

Wellcome/CRC Institute, Cambridge, UK.

出版信息

EMBO J. 1996 Sep 16;15(18):5093-103.

Abstract

Ku, a heterodimer of polypeptides of approximately 70 kDa and 80 kDa (Ku70 and Ku80, respectively), binds avidly to DNA double-strand breaks (DSBs). Mammalian cells defective in Ku are hypersensitive to ionizing radiation due to a deficiency in DSB repair. Here, we show that the simple inactivation of the Saccharomyces cerevisiae Ku70 homologue (Yku70p), does not lead to increased radiosensitivity. However, yku70 mutations enhance the radiosensitivity of rad52 strains, which are deficient in homologous recombination. Through establishing a rapid and reproducible in vivo plasmid rejoining assay, we show that Yku70p plays a crucial role in the repair of DSBs bearing cohesive termini. Whereas this damage is repaired accurately in YKU70 backgrounds, in yku70 mutant strains terminal deletions of up to several hundred bp occur before ligation ensues. Interestingly, this error-prone DNA repair pathway utilizes short homologies between the two recombining molecules and is thus highly reminiscent of a predominant form of DSB repair that operates in vertebrates. These data therefore provide evidence for two distinct and evolutionarily conserved illegitimate recombination pathways. One of these is accurate and Yku70p-dependent, whereas the other is error-prone and Yku70-independent. Furthermore, our studies suggest that Yku70 promotes genomic stability both by promoting accurate DNA repair and by serving as a barrier to error-prone repair processes.

摘要

Ku是一种由大约70 kDa和80 kDa的多肽组成的异二聚体(分别为Ku70和Ku80),它能强烈结合DNA双链断裂(DSB)。Ku功能缺陷的哺乳动物细胞由于DSB修复缺陷而对电离辐射高度敏感。在此,我们表明酿酒酵母Ku70同源物(Yku70p)的简单失活并不会导致辐射敏感性增加。然而,yku70突变会增强rad52菌株的辐射敏感性,rad52菌株在同源重组方面存在缺陷。通过建立一种快速且可重复的体内质粒重新连接试验,我们表明Yku70p在具有粘性末端的DSB修复中起关键作用。在YKU70背景下这种损伤能被准确修复,而在yku70突变菌株中,在连接发生之前会出现长达几百个碱基对的末端缺失。有趣的是,这种易出错的DNA修复途径利用了两个重组分子之间的短同源性,因此与脊椎动物中主要的DSB修复形式极为相似。这些数据因此为两种不同且在进化上保守的非法重组途径提供了证据。其中一种是准确的且依赖Yku70p,而另一种是易出错的且不依赖Yku70p。此外,我们的研究表明Yku70通过促进准确的DNA修复以及作为易出错修复过程的屏障来促进基因组稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d336/452249/e9799e8694e1/emboj00018-0315-a.jpg

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