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复制蛋白A是酿酒酵母减数分裂重组所必需的。

Replication protein A is required for meiotic recombination in Saccharomyces cerevisiae.

作者信息

Soustelle Christine, Vedel Michèle, Kolodner Richard, Nicolas Alain

机构信息

Institut Curie, Section de recherche, CNRS UMR144, 75248 Paris Cedex 05, France.

出版信息

Genetics. 2002 Jun;161(2):535-47. doi: 10.1093/genetics/161.2.535.

Abstract

In Saccharomyces cerevisiae, meiotic recombination is initiated by transient DNA double-stranded breaks (DSBs). These DSBs undergo a 5' --> 3' resection to produce 3' single-stranded DNA ends that serve to channel DSBs into the RAD52 recombinational repair pathway. In vitro studies strongly suggest that several proteins of this pathway--Rad51, Rad52, Rad54, Rad55, Rad57, and replication protein A (RPA)--play a role in the strand exchange reaction. Here, we report a study of the meiotic phenotypes conferred by two missense mutations affecting the largest subunit of RPA, which are localized in the protein interaction domain (rfa1-t11) and in the DNA-binding domain (rfa1-t48). We find that both mutant diploids exhibit reduced sporulation efficiency, very poor spore viability, and a 10- to 100-fold decrease in meiotic recombination. Physical analyses indicate that both mutants form normal levels of meiosis-specific DSBs and that the broken ends are processed into 3'-OH single-stranded tails, indicating that the RPA complex present in these rfa1 mutants is functional in the initial steps of meiotic recombination. However, the 5' ends of the broken fragments undergo extensive resection, similar to what is observed in rad51, rad52, rad55, and rad57 mutants, indicating that these RPA mutants are defective in the repair of the Spo11-dependent DSBs that initiate homologous recombination during meiosis.

摘要

在酿酒酵母中,减数分裂重组由瞬时DNA双链断裂(DSB)引发。这些DSB进行5'→3'切除,产生3'单链DNA末端,用于将DSB导入RAD52重组修复途径。体外研究强烈表明,该途径的几种蛋白质——Rad51、Rad52、Rad54、Rad55、Rad57和复制蛋白A(RPA)——在链交换反应中发挥作用。在这里,我们报告了一项对影响RPA最大亚基的两个错义突变所赋予的减数分裂表型的研究,这两个突变分别位于蛋白质相互作用结构域(rfa1 - t11)和DNA结合结构域(rfa1 - t48)。我们发现,这两个突变二倍体的孢子形成效率均降低,孢子活力非常差,减数分裂重组减少了10至100倍。物理分析表明,这两个突变体形成的减数分裂特异性DSB水平正常,断裂末端被加工成3'-OH单链尾巴,表明这些rfa1突变体中存在的RPA复合物在减数分裂重组的初始步骤中是有功能的。然而,断裂片段的5'末端经历了广泛的切除,这与在rad51、rad52、rad55和rad57突变体中观察到的情况相似,表明这些RPA突变体在减数分裂期间启动同源重组的Spo11依赖性DSB的修复中存在缺陷。

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