Department of Developmental Biology, Wenner-Gren Institute, Stockholm University, Stockholm, Sweden.
DNA Repair (Amst). 2012 Oct 1;11(10):833-43. doi: 10.1016/j.dnarep.2012.07.004. Epub 2012 Aug 21.
Yen1 is a nuclease identified in Saccharomyces cerevisiae that cleaves the Holliday junction (HJ) intermediate formed during homologous recombination. Alternative routes to disjoin HJs are performed by the Mus81/Mms4- and Sgs1/Top3/Rmi1-complexes. Here, we investigate the role of the Yen1 protein in the yeast Kluyveromyces lactis. We demonstrate that both yen1 mus81 and yen1 sgs1 double mutants displayed negative genetic interactions in the presence of DNA-damaging chemicals. To test if these phenotypes required the catalytic activity of Yen1, we introduced point mutations targeting the catalytic site of Yen1, which abolished the nuclease activity in vitro. Remarkably, catalytically inactive Yen1 did not exacerbate the hydroxyurea sensitivity of the sgs1Δ strain, which the yen1Δ allele did. In addition, overexpression of catalytically inactive Yen1 partially rescued the DNA damage sensitivity of both mus81 and sgs1 mutant strains albeit less efficiently than WT Yen1. These results suggest that Yen1 serves both a catalytic and non-catalytic role in its redundant function with Mus81 and Sgs1. Diploids lacking Mus81 had a severe defect in sporulation efficiency and crossover frequency, but diploids lacking both Mus81 and Yen1 showed no further reduction in spore formation. Hence, Yen1 had no evident role in meiosis. However, overexpression of WT Yen1, but not catalytically inactive Yen1 partially rescued the crossover defect in mus81/mus81 mutant diploids. Yen1 is a member of the RAD2/XPG-family of nucleases, but genetic analyses revealed no genetic interaction between yen1 and other family members (rad2, exo1 and rad27). In addition, yen1 mutants had normal nonhomologous end-joining efficiency. We discuss the similarities and differences between K. lactis Yen1 and Yen1/GEN1 from other organisms.
日元是一种在酿酒酵母中鉴定的核酸内切酶,它能切割同源重组过程中形成的 Holliday 连接(HJ)中间体。通过 Mus81/Mms4- 和 Sgs1/Top3/Rmi1 复合物来执行分离 HJ 的替代途径。在这里,我们研究了 Yen1 蛋白在酵母乳酸克鲁维酵母中的作用。我们证明,在存在 DNA 损伤化学物质的情况下,yen1mus81 和 yen1sgs1 双突变体均表现出负遗传相互作用。为了测试这些表型是否需要 Yen1 的催化活性,我们引入了针对 Yen1 催化位点的点突变,该突变在体外消除了核酸酶活性。值得注意的是,催化失活的 Yen1 并没有加剧 sgs1Δ 菌株对羟基脲的敏感性,而 yen1Δ 等位基因则加剧了这种敏感性。此外,催化失活的 Yen1 的过表达部分挽救了 mus81 和 sgs1 突变株的 DNA 损伤敏感性,尽管效率不如 WT Yen1 高。这些结果表明,Yen1 在与 Mus81 和 Sgs1 冗余功能中既具有催化作用,也具有非催化作用。缺乏 Mus81 的二倍体在孢子形成效率和交叉频率方面存在严重缺陷,但缺乏 Mus81 和 Yen1 的二倍体则没有进一步降低孢子形成。因此,Yen1 在减数分裂中没有明显作用。然而,WT Yen1 的过表达,但不是催化失活的 Yen1 部分挽救了 mus81/mus81 突变体二倍体中的交叉缺陷。Yen1 是 RAD2/XPG 家族核酸内切酶的成员,但遗传分析显示 yen1 与其他家族成员(rad2、exo1 和 rad27)之间没有遗传相互作用。此外,yen1 突变体具有正常的非同源末端连接效率。我们讨论了 K. lactis Yen1 与其他生物体中的 Yen1/GEN1 的相似点和不同点。