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Rad51与Rad52在重组和DNA修复中的协同作用。

Synergistic actions of Rad51 and Rad52 in recombination and DNA repair.

作者信息

Benson F E, Baumann P, West S C

机构信息

Imperial Cancer Research Fund, Clare Hall Laboratories, South Mimms, Hertfordshire, UK.

出版信息

Nature. 1998 Jan 22;391(6665):401-4. doi: 10.1038/34937.

Abstract

In the yeast Saccharomyces cerevisiae, mutations in the genes RAD51 or RAD52 result in severe defects in genetic recombination and the repair of double-strand DNA breaks. These genes, and others of the RAD52 epistasis group (RAD50, RAD54, RAD55, RAD57, RAD59, MRE11 and XRS2), were first identified by their sensitivity to X-rays. They were subsequently shown to be required for spontaneous and induced mitotic recombination, meiotic recombination, and mating-type switching. Human homologues of RAD50, RAD51, RAD52, RAD54 and MRE11 have been identified. Targeted disruption of the murine RAD51 gene results in an embryonic lethal phenotype, indicating that Rad51 protein is required during cell proliferation. Biochemical studies have shown that human RAD51 encodes a protein of relative molecular mass 36,966 (hRad51) that promotes ATP-dependent homologous pairing and DNA strand exchange. As a structural and functional homologue of the RecA protein from Escherichia coli, hRad51 is thought to play a central role in recombination. Yeast Rad51 has been shown to interact with Rad52 protein, as does the human homologue. Here we show that hRad52 stimulates homologous pairing by hRad51. The DNA-binding properties of hRad52 indicate that Rad52 is involved in an early stage of Rad51-mediated recombination.

摘要

在酿酒酵母中,RAD51或RAD52基因发生突变会导致基因重组以及双链DNA断裂修复出现严重缺陷。这些基因以及RAD52上位性组中的其他基因(RAD50、RAD54、RAD55、RAD57、RAD59、MRE11和XRS2)最初是因其对X射线敏感而被鉴定出来的。随后发现它们对于自发和诱导的有丝分裂重组、减数分裂重组以及交配型转换都是必需的。已鉴定出RAD50、RAD51、RAD52、RAD54和MRE11的人类同源物。对小鼠RAD51基因进行靶向破坏会导致胚胎致死表型,这表明Rad51蛋白在细胞增殖过程中是必需的。生化研究表明,人类RAD51编码一种相对分子质量为36966的蛋白质(hRad51),它能促进ATP依赖的同源配对和DNA链交换。作为大肠杆菌RecA蛋白的结构和功能同源物,hRad51被认为在重组过程中起核心作用。酵母Rad51已被证明能与Rad52蛋白相互作用,人类同源物也是如此。在此我们表明,hRad52能刺激hRad51的同源配对。hRad52的DNA结合特性表明,Rad52参与了Rad51介导的重组的早期阶段。

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