Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.
Mol Biol Cell. 2010 Jul 1;21(13):2306-14. doi: 10.1091/mbc.e10-01-0050. Epub 2010 May 5.
Replication-associated recombinational repair is important for genome duplication and cell survival under DNA damage conditions. Several nonclassical recombination factors have been implicated in this process, but their functional relationships are not clear. Here, we show that three of these factors, Mph1, Mms2, and the Shu complex, can act independently to promote the formation of recombination intermediates during impaired replication. However, their functions become detrimental when cells lack the Smc5/6 complex or Esc2. We show that mph1Delta, mms2Delta, and shu1Delta suppress the sensitivity to the replication-blocking agent methylmethane sulfonate (MMS) in smc6 mutants, with double deletions conferring stronger suppression. These deletion mutations also rescue the MMS sensitivity of esc2Delta cells. In addition, two-dimensional gel analysis demonstrates that mph1Delta, mms2Delta, and shu1Delta each reduce the level of recombination intermediates in an smc6 mutant when cells replicate in the presence of MMS, and that double deletions lead to a greater reduction. Our work thus suggests that Mph1, Mms2, and the Shu complex can function in distinct pathways in replication-associated recombinational repair and that the Smc5/6 complex and Esc2 prevent the accumulation of toxic recombination intermediates generated in these processes.
复制相关重组修复对于基因组复制和 DNA 损伤条件下的细胞存活很重要。有几个非经典的重组因子被牵涉到这个过程中,但它们的功能关系尚不清楚。在这里,我们表明这三个因子,Mph1、Mms2 和 Shu 复合物,可以独立地促进复制受损时重组中间体的形成。然而,当细胞缺乏 Smc5/6 复合物或 Esc2 时,它们的功能就会变得有害。我们表明 mph1Δ、mms2Δ 和 shu1Δ 可以在 smc6 突变体中抑制对复制阻断剂甲磺酸甲酯 (MMS) 的敏感性,双缺失则会产生更强的抑制作用。这些缺失突变也挽救了 esc2Δ 细胞对 MMS 的敏感性。此外,二维凝胶分析表明,当细胞在 MMS 存在的情况下复制时,mph1Δ、mms2Δ 和 shu1Δ 都能降低 smc6 突变体中的重组中间体水平,而双缺失则导致更大的降低。因此,我们的工作表明,Mph1、Mms2 和 Shu 复合物可以在复制相关重组修复中发挥不同的作用,并且 Smc5/6 复合物和 Esc2 可以防止这些过程中产生的有毒重组中间体的积累。