Zierhut Christian, Berlinger Marc, Rupp Christian, Shinohara Akira, Klein Franz
Max F. Perutz Laboratories, Cell Biology and Genetics, Institute of Botany, University of Vienna, Rennweg 14, A-1030, Vienna, Austria.
Curr Biol. 2004 May 4;14(9):752-62. doi: 10.1016/j.cub.2004.04.030.
While double-strand break (DSB) repair is vital to the survival of cells during both meiosis and mitosis, the preferred mechanism of repair differs drastically between the two types of cell cycle. Thus, during meiosis, it is the homologous chromosome rather than the sister chromatid that is used as a repair template.
Cells attempting to undergo meiosis in the absence of Mnd1 arrest in prophase I due to the activation of the Mec1 DNA-damage checkpoint accumulating hyperresected DSBs and aberrant synapsis. Sporulation of mnd1Delta strains can be restored by deleting RED1 or HOP1, which permits repair of DSBs by using the sister chromatid as a repair template. Mnd1 localizes to chromatin as foci independently of DSB formation, axial element (AE) formation, and synaptonemal complex (SC) formation and does not colocalize with Rad51. Mnd1 does not preferentially associate with hotspots of recombination.
Our results suggest that Mnd1 acts specifically to promote DSB repair by using the homologous chromosome as a repair template. The presence of Rec8, Red1, or Hop1 renders Mnd1 indispensable for DNA repair, presumably through the establishment of interhomolog (IH) bias. Localization studies suggest that Mnd1 carries out this function without being specifically recruited to the sites of DNA repair. We propose a model in which Mnd1 facilitates chromatin accessibility, which is required to allow strand invasion in meiotic chromatin.
虽然双链断裂(DSB)修复对于减数分裂和有丝分裂期间细胞的存活至关重要,但两种细胞周期类型之间的首选修复机制差异很大。因此,在减数分裂期间,用作修复模板的是同源染色体而非姐妹染色单体。
由于Mec1 DNA损伤检查点的激活,缺乏Mnd1的细胞在减数分裂前期I停滞,积累过度切除的DSB和异常联会。通过删除RED1或HOP1可以恢复mnd1Delta菌株的孢子形成,这允许使用姐妹染色单体作为修复模板来修复DSB。Mnd1独立于DSB形成、轴元件(AE)形成和联会复合体(SC)形成定位于染色质上形成焦点,并且不与Rad51共定位。Mnd1不优先与重组热点相关联。
我们的结果表明,Mnd1通过使用同源染色体作为修复模板来特异性地促进DSB修复。Rec8、Red1或Hop1的存在使Mnd1对于DNA修复不可或缺,大概是通过建立同源间(IH)偏向。定位研究表明,Mnd1在不被特异性招募到DNA修复位点的情况下执行此功能。我们提出了一个模型,其中Mnd1促进染色质可及性,这是减数分裂染色质中进行链侵入所必需的。