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粟酒裂殖酵母中RAD52同源物的特性分析。

Characterization of RAD52 homologs in the fission yeast Schizosaccharomyces pombe.

作者信息

Vreeken K, Zonneveld J B, Brandsma J A, Lombaerts M, Murray J M, Lohman P H, Pastink A

机构信息

MGC Department of Radiation Genetics and Chemical Mutagenesis, Leiden University Medical Center, Wassenaarseweg 72, 2333 AL, Leiden, The Netherlands.

出版信息

Mutat Res. 2001 Jan 5;461(4):311-23. doi: 10.1016/s0921-8777(00)00060-4.

Abstract

The RAD52 gene of Saccharomyces cerevisiae is essential for repair of DNA double-strand breaks (DSBs) by homologous recombination. Inactivation of this gene confers hypersensitivity to DSB-inducing agents and defects in most forms of recombination. The rad22+ gene in Schizosaccharomyces pombe (here referred to as rad22A+) has been characterized as a homolog of RAD52 in fission yeast. Here, we report the identification of a second RAD52 homolog in Schizosaccharomyces pombe, called rad22B+. The amino acid sequences of Rad22A and Rad22B show significant conservation (38% identity). Deletion mutants of respectively, rad22A and rad22B, show different phenotypes with respect to sensitivity to X-rays and the ability to perform homologous recombination as measured by the integration of plasmid DNA. Inactivation of rad22A+ leads to a severe sensitivity to X-rays and a strong decrease in recombination (13-fold), while the rad22B mutation does not result in a decrease in homologous recombination or a change in radiation sensitivity. In a rad22A-rad22B double mutant the radiation sensitivity is further enhanced in comparison with the rad22A single mutant. Overexpression of the rad22B+ gene results in partial suppression of the DNA repair defects of the rad22A mutant strain. Meiotic recombination and spore viability are only slightly affected in either single mutant, but outgrowth of viable spores is almost 31-fold reduced in the rad22A-rad22B double mutant. The results obtained imply a crucial role for rad22A+ in repair and recombination in vegetative cells just like RAD52 in S. cerevisiae. The rad22B+ gene presumably has an auxiliary role in the repair of DSBs. The drastic reduced spore viability in the double mutant suggests that meiosis in S. pombe is dependent on the presence of either rad22A+ or rad22B+.

摘要

酿酒酵母的RAD52基因对于通过同源重组修复DNA双链断裂(DSB)至关重要。该基因的失活会导致对DSB诱导剂的超敏反应以及大多数重组形式的缺陷。粟酒裂殖酵母中的rad22 +基因(此处称为rad22A +)已被鉴定为裂殖酵母中RAD52的同源物。在此,我们报告了在粟酒裂殖酵母中鉴定出的第二个RAD52同源物,称为rad22B +。Rad22A和Rad22B的氨基酸序列显示出显著的保守性(38%的同一性)。分别缺失rad22A和rad22B的突变体在对X射线的敏感性以及通过质粒DNA整合测量的进行同源重组的能力方面表现出不同的表型。rad22A +的失活导致对X射线的严重敏感性和重组的强烈降低(13倍),而rad22B突变不会导致同源重组的降低或辐射敏感性的改变。与rad22A单突变体相比,rad22A-rad22B双突变体的辐射敏感性进一步增强。rad22B +基因的过表达导致rad22A突变菌株的DNA修复缺陷得到部分抑制。减数分裂重组和孢子活力在任一单突变体中仅受到轻微影响,但在rad22A-rad22B双突变体中,存活孢子的生长几乎降低了31倍。所获得的结果表明,rad22A +在营养细胞的修复和重组中起着关键作用,就像酿酒酵母中的RAD52一样。rad22B +基因可能在DSB的修复中起辅助作用。双突变体中孢子活力的急剧降低表明粟酒裂殖酵母中的减数分裂依赖于rad22A +或rad22B +的存在。

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