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酿酒酵母中不依赖RAD51的有丝分裂重组需要Rad52同源物。

A Rad52 homolog is required for RAD51-independent mitotic recombination in Saccharomyces cerevisiae.

作者信息

Bai Y, Symington L S

机构信息

Columbia University College of Physicians and Surgeons, Department of Microbiology and Institute of Cancer Research, New York, New York 10032, USA.

出版信息

Genes Dev. 1996 Aug 15;10(16):2025-37. doi: 10.1101/gad.10.16.2025.

Abstract

With the use of an intrachromosomal inverted-repeat as a recombination reporter we have previously shown that mitotic recombination is dependent on the RAD52 gene. However, recombination was found to be reduced only 4-fold by mutation of RAD51, which encodes a homolog of bacterial RecA proteins. A rad51, which strain containing the recombination reporter was mutagenized to identify components of the RAD51-independent pathway. One mutation identified, rad59, reduced recombination 1200-fold in the presence of a rad51 mutation, but only 4- to 5-fold in a wild-type background. Thus the rad51 and rad59 mutations reduce recombination synergistically. The rad59 mutation reduced both spontaneous and double-strand-break-induced recombination between inverted repeats. However, the rate of interchromosomal recombination was increased in a rad59 homozygous diploid. These observations suggest that RAD59 functions specifically in intrachromosomal recombination. The rad59 mutant strain was sensitive to ionizing radiation, and this phenotype was used to clone the RAD59 gene by complementation. The gene encodes a protein of 238 amino acids with significant homology to members of the Rad52 family. Overexpression of RAD52 was found to suppress the DNA repair and recombination defects conferred by the rad59 mutation, suggesting that these proteins have overlapping roles or function as a complex.

摘要

利用染色体内反向重复序列作为重组报告基因,我们先前已表明有丝分裂重组依赖于RAD52基因。然而,发现通过编码细菌RecA蛋白同源物的RAD51的突变,重组仅降低了4倍。对含有重组报告基因的rad51缺陷型菌株进行诱变,以鉴定RAD51非依赖性途径的组分。鉴定出的一个突变体rad59,在存在rad51突变的情况下使重组降低了1200倍,但在野生型背景下仅降低了4至5倍。因此,rad51和rad59突变协同降低重组。rad59突变降低了反向重复序列之间的自发重组和双链断裂诱导的重组。然而,在rad59纯合二倍体中染色体间重组率增加。这些观察结果表明RAD59在染色体内重组中具有特定功能。rad59突变体菌株对电离辐射敏感,并且利用这种表型通过互补作用克隆了RAD59基因。该基因编码一个238个氨基酸的蛋白质,与Rad52家族成员具有显著同源性。发现RAD52的过表达可抑制由rad59突变赋予的DNA修复和重组缺陷,这表明这些蛋白质具有重叠的作用或作为一个复合体发挥功能。

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