London Research Institute, Cancer Research UK, South Mimms, Herts, UK.
DNA Repair (Amst). 2010 Apr 4;9(4):394-402. doi: 10.1016/j.dnarep.2009.12.017. Epub 2010 Jan 27.
In eukaryotic cells, multiple DNA repair mechanisms respond to a wide variety of DNA lesions. Homologous recombination-dependent repair provides a pathway for dealing with DNA double-strand breaks and replication fork demise. A key step in this process is the resolution of recombination intermediates such as Holliday junctions (HJs). Recently, nucleases from yeast (Yen1) and human cells (GEN1) were identified that can resolve HJ intermediates, in a manner analogous to the E. coli HJ resolvase RuvC. Here, we have analyzed the role of Yen1 in DNA repair in S. cerevisiae, and show that while yen1Delta mutants are repair-proficient, yen1Delta mus81Delta double mutants are exquisitely sensitive to a variety of DNA-damaging agents that disturb replication fork progression. This phenotype is dependent upon RAD52, indicating that toxic recombination intermediates accumulate in the absence of Yen1 and Mus81. After MMS treatment, yen1Delta mus81Delta double mutants arrest with a G2 DNA content and unsegregated chromosomes. These findings indicate that Yen1 can act upon recombination/repair intermediates that arise in MUS81-defective cells following replication fork damage.
在真核细胞中,多种 DNA 修复机制可应对各种 DNA 损伤。同源重组依赖的修复为应对 DNA 双链断裂和复制叉崩溃提供了一条途径。该过程的关键步骤是解决诸如 Holliday 连接(HJ)等重组中间体。最近,从酵母(Yen1)和人类细胞(GEN1)中鉴定出的核酸酶可以解决 HJ 中间体,其方式类似于大肠杆菌的 HJ 解旋酶 RuvC。在这里,我们分析了 Yen1 在酿酒酵母 DNA 修复中的作用,并表明 yen1Delta 突变体具有修复能力,而 yen1Delta mus81Delta 双突变体对各种破坏复制叉进展的 DNA 损伤剂极为敏感。这种表型依赖于 RAD52,表明在没有 Yen1 和 Mus81 的情况下,有毒的重组中间体积累。在用 MMS 处理后,yen1Delta mus81Delta 双突变体在 G2 DNA 含量和未分离的染色体中停滞。这些发现表明,Yen1 可以作用于复制叉损伤后 MUS81 缺陷细胞中出现的重组/修复中间体。