Institute of Genetics, University of Nottingham, Medical School, Queens Medical Centre, Nottingham, UK.
Genetics. 2009 Oct;183(2):441-51, 1SI-12SI. doi: 10.1534/genetics.109.106674. Epub 2009 Aug 3.
Unlike in meiosis where recombination near telomeres is repressed, subtelomeric regions appear to recombine with each other frequently in vegetative cells with no detrimental consequences. To test whether or not such recombination is prevented in the core of chromosomes for maintenance of genome stability, we measured allelic homologous recombination (HR) along chromosome arms and between different ectopic locations. We found that there is an increase of recombination at telomeres in wild-type cells compared with sequences at proximal subtelomeric and interstitial regions of the genome. We also screened for mutations that result in an increase in HR between a telomeric sequence and a more internal sequence, which normally exhibit very low rates of HR. YKU80 was hit most frequently in our screen, and we show that the yKu heterodimer specifically represses HR in the vicinity of telomeres. This repression of HR is not explained solely by the role of yKu in maintaining telomere length, silencing, or tethering to the nuclear periphery. Analysis of mutant strains harboring deleted core X sequences revealed a role for this subtelomeric element in preventing telomeric recombination. Furthermore, core X bestowed this protection as part of the same pathway as yKu. Our findings implicate a role for both yKu and core X in stabilizing the genome against recombination events involving telomeric sequences.
与减数分裂中抑制端粒附近重组不同,在营养细胞中,端粒附近区域似乎经常发生相互重组,而没有产生有害后果。为了检验在维持基因组稳定性的核心染色体中是否防止了这种重组,我们测量了沿着染色体臂和不同异位位置的等位基因同源重组 (HR)。我们发现,与基因组近端端粒和间隔区的序列相比,野生型细胞中端粒处的重组增加。我们还筛选了导致端粒序列与更内部序列之间 HR 增加的突变,这些突变通常表现出非常低的 HR 率。在我们的筛选中,YKU80 被击中的频率最高,我们表明 yKu 异二聚体特异性抑制端粒附近的 HR。这种 HR 抑制不能仅通过 yKu 在维持端粒长度、沉默或与核周界连接中的作用来解释。分析含有缺失核心 X 序列的突变株表明,这个端粒附近元件在防止端粒重组中起作用。此外,核心 X 作为 yKu 的同一途径的一部分赋予了这种保护。我们的发现表明 yKu 和核心 X 都在稳定基因组免受涉及端粒序列的重组事件方面发挥作用。