Laboratory of Genome and Chromosome Functions, Institute for Protein Research, Osaka University, Suita, Osaka 565-0871, Japan.
Biochem Biophys Res Commun. 2013 Nov 22;441(3):593-9. doi: 10.1016/j.bbrc.2013.10.111. Epub 2013 Oct 30.
Meiotic cells generate physiological programmed DNA double-strand breaks (DSBs) to initiate meiotic recombination. Interhomolog repair of the programmed DSBs by meiotic recombination is vital to ensure accurate chromosome segregation at meiosis I to produce normal gametes. In budding yeast, the DNA damage checkpoint kinase Rad53 is activated by DSBs which accidentally occur as DNA lesions in mitosis and meiosis; however, meiotic programmed DSBs which occur at approximately 160 loci per genome fail to activate the kinase. Thus, Rad53 activation appears to be silenced in response to meiotic programmed DSBs. In this study, to address the biological significance of Rad53's insensitivity to meiotic DSBs, we examined the effects of Rad53 overexpression on meiotic processes. The overexpression led to partial activation of Rad53, uncovering that the negative impacts of Rad53 kinase activation on meiotic progression, and formation and interhomolog repair of meiotic programmed DSBs.
减数分裂细胞产生生理性程序性 DNA 双链断裂(DSB)以启动减数分裂重组。通过减数分裂重组修复同源染色体的程序性 DSB 对于确保减数分裂 I 中染色体正确分离,产生正常配子至关重要。在 budding yeast 中,DNA 损伤检查点激酶 Rad53 被 DSB 激活,这些 DSB 是有丝分裂和减数分裂中 DNA 损伤意外发生的;然而,发生在每个基因组约 160 个位点的减数分裂程序性 DSB 不能激活激酶。因此,Rad53 的激活似乎是对减数分裂程序性 DSB 的沉默反应。在这项研究中,为了解决 Rad53 对减数分裂 DSB 不敏感的生物学意义,我们研究了 Rad53 过表达对减数分裂过程的影响。过表达导致 Rad53 的部分激活,揭示了 Rad53 激酶激活对减数分裂进程、减数分裂程序性 DSB 的形成和同源染色体修复的负面影响。