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Fission yeast Swi5/Sfr1 and Rhp55/Rhp57 differentially regulate Rhp51-dependent recombination outcomes

机译:裂变酵母Swi5 / Sfr1和Rhp55 / Rhp57差异调节Rhp51依赖的重组结果

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摘要

Several accessory proteins referred to as mediators are required for the full activity of the Rad51 (Rhp51 in fission yeast) recombinase. In this study, we analyzed in vivo functions of the recently discovered Swi5/Sfr1 complex from fission yeast. In normally growing cells, the Swi5-GFP protein localizes to the nucleus, where it forms a diffuse nuclear staining pattern with a few distinct foci. These spontaneous foci do not form in swi2Δ mutants. Upon UV irradiation, Swi5 focus formation is induced in swi2Δ mutants, a response that depends on Sfr1 function, and Sfr1 also forms foci that colocalize with damage-induced Rhp51 foci. The number of UV-induced Rhp51 foci is partially reduced in swi5Δ and rhp57Δ mutants and completely abolished in an swi5Δ rhp57Δ double mutant. An assay for products generated by HO endonuclease-induced DNA double-strand breaks (DSBs) reveals that Rhp51 and Rhp57, but not Swi5/Sfr1, are essential for crossover production. These results suggest that Swi5/Sfr1 functions as an Rhp51 mediator but processes DSBs in a manner different from that of the Rhp55/57 mediator.
机译:Rad51(裂变酵母中的Rhp51)重组酶的全部活性需要几种被称为介体的辅助蛋白。在这项研究中,我们分析了裂变酵母中最近发现的Swi5 / Sfr1复合物的体内功能。在正常生长的细胞中,Swi5-GFP蛋白位于细胞核,在细胞核中形成具有几个不同病灶的弥漫性核染色模式。这些自发灶不在swi2Δ突变体中形成。在紫外线照射下,在swi2Δ突变体中诱导Swi5焦点形成,这取决于Sfr1功能,并且Sfr1也形成与损伤诱导的Rhp51焦点共定位的焦点。在swi5Δ和rhp57Δ突变体中,紫外线诱导的Rhp51病灶数量部分减少,而在swi5Δrhp57Δ双突变体中则完全废除了。对HO内切核酸酶诱导的DNA双链断裂(DSB)生成的产物的分析表明,Rhp51和Rhp57(而非Swi5 / Sfr1)对于交叉生产至关重要。这些结果表明Swi5 / Sfr1充当Rhp51介体,但以不同于Rhp55 / 57介体的方式处理DSB。

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