Faculty of Biotechnology, Wrocław University, Przybyszewskiego 63-77, 51-148 Wrocław, Poland, Institute of Low Temperature and Structure Research, Polish Academy of Sciences, PO Box 1410, 50-950 Wrocław, Poland and Genome Damage and Stability Centre, University of Sussex, Falmer, Brighton, BN1 9RQ, UK.
Nucleic Acids Res. 2013 Sep;41(17):8196-209. doi: 10.1093/nar/gkt564. Epub 2013 Jul 4.
Previously we identified Rrp1 and Rrp2 as two proteins required for the Sfr1/Swi5-dependent branch of homologous recombination (HR) in Schizosaccharomyces pombe. Here we use a yeast two-hybrid approach to demonstrate that Rrp1 and Rrp2 can interact with each other and with Swi5, an HR mediator protein. Rrp1 and Rrp2 form co-localizing methyl methanesulphonate-induced foci in nuclei, further suggesting they function as a complex. To place the Rrp1/2 proteins more accurately within HR sub-pathways, we carried out extensive epistasis analysis between mutants defining Rrp1/2, Rad51 (recombinase), Swi5 and Rad57 (HR-mediators) plus the anti-recombinogenic helicases Srs2 and Rqh1. We confirm that Rrp1 and Rrp2 act together with Srs2 and Swi5 and independently of Rad57 and show that Rqh1 also acts independently of Rrp1/2. Mutants devoid of Srs2 are characterized by elevated recombination frequency with a concomitant increase in the percentage of conversion-type recombinants. Strains devoid of Rrp1 or Rrp2 did not show a change in HR frequency, but the number of conversion-type recombinants was increased, suggesting a possible function for Rrp1/2 with Srs2 in counteracting Rad51 activity. Our data allow us to propose a model placing Rrp1 and Rrp2 functioning together with Swi5 and Srs2 in a synthesis-dependent strand annealing HR repair pathway.
先前我们鉴定出 Rrp1 和 Rrp2 是裂殖酵母中 Sfr1/Swi5 依赖的同源重组(HR)分支所必需的两种蛋白。在此,我们利用酵母双杂交方法证明 Rrp1 和 Rrp2 可以相互作用,也可以与 HR 介体蛋白 Swi5 相互作用。Rrp1 和 Rrp2 在核中形成共定位的甲磺酸甲酯诱导焦点,进一步表明它们作为复合物发挥作用。为了更准确地将 Rrp1/2 蛋白定位在 HR 亚途径中,我们在定义 Rrp1/2、Rad51(重组酶)、Swi5 和 Rad57(HR 介体)的突变体之间进行了广泛的上位性分析,以及抗重组螺旋酶 Srs2 和 Rqh1。我们证实 Rrp1 和 Rrp2 与 Srs2 和 Swi5 一起作用,不依赖于 Rad57,并表明 Rqh1 也不依赖于 Rrp1/2。缺乏 Srs2 的突变体的特征是重组频率升高,同时转化率重组体的百分比增加。缺乏 Rrp1 或 Rrp2 的菌株的 HR 频率没有变化,但转化率重组体的数量增加,这表明 Rrp1/2 可能与 Srs2 一起在拮抗 Rad51 活性方面具有功能。我们的数据允许我们提出一个模型,将 Rrp1 和 Rrp2 与 Swi5 和 Srs2 一起定位在依赖合成的链退火 HR 修复途径中。