Zafar Faria, Okita Akiko K, Onaka Atsushi T, Su Jie, Katahira Yasuhiro, Nakayama Jun-Ichi, Takahashi Tatsuro S, Masukata Hisao, Nakagawa Takuro
Department of Biological Sciences, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
Division of Chromatin Regulation, National Institute for Basic Biology, Nishigonaka 38, Myodaiji, Okazaki, Aichi 44-8585, Japan.
Nucleic Acids Res. 2017 Nov 2;45(19):11222-11235. doi: 10.1093/nar/gkx763.
Centromeres that are essential for faithful segregation of chromosomes consist of unique DNA repeats in many eukaryotes. Although recombination is under-represented around centromeres during meiosis, little is known about recombination between centromere repeats in mitotic cells. Here, we compared spontaneous recombination that occurs between ade6B/ade6X inverted repeats integrated at centromere 1 (cen1) or at a non-centromeric ura4 locus in fission yeast. Remarkably, distinct mechanisms of homologous recombination (HR) were observed in centromere and non-centromere regions. Rad51-dependent HR that requires Rad51, Rad54 and Rad52 was predominant in the centromere, whereas Rad51-independent HR that requires Rad52 also occurred in the arm region. Crossovers between inverted repeats (i.e. inversions) were under-represented in the centromere as compared to the arm region. While heterochromatin was dispensable, Mhf1/CENP-S, Mhf2/CENP-X histone-fold proteins and Fml1/FANCM helicase were required to suppress crossovers. Furthermore, Mhf1 and Fml1 were found to prevent gross chromosomal rearrangements mediated by centromere repeats. These data for the first time uncovered the regulation of mitotic recombination between DNA repeats in centromeres and its physiological role in maintaining genome integrity.
对于染色体的准确分离至关重要的着丝粒,在许多真核生物中由独特的DNA重复序列组成。尽管在减数分裂期间着丝粒周围的重组表现不足,但对于有丝分裂细胞中着丝粒重复序列之间的重组却知之甚少。在这里,我们比较了在裂殖酵母中整合在1号着丝粒(cen1)或非着丝粒ura4位点的ade6B/ade6X反向重复序列之间发生的自发重组。值得注意的是,在着丝粒和非着丝粒区域观察到了不同的同源重组(HR)机制。在着丝粒中,需要Rad51、Rad54和Rad52的依赖Rad51的HR占主导地位,而在臂区域也发生了需要Rad52的不依赖Rad51的HR。与臂区域相比,着丝粒中反向重复序列之间的交叉(即倒位)表现不足。虽然异染色质是可有可无的,但Mhf1/CENP-S、Mhf2/CENP-X组蛋白折叠蛋白和Fml1/FANCM解旋酶是抑制交叉所必需的。此外,发现Mhf1和Fml1可防止由着丝粒重复序列介导的染色体大片段重排。这些数据首次揭示了着丝粒中DNA重复序列之间有丝分裂重组的调控及其在维持基因组完整性中的生理作用。