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首页> 外文期刊>Molecular Microbiology >Mating type influences chromosome loss and replicative senescence in telomerase-deficient budding yeast by Dnl4-dependent telomere fusion.
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Mating type influences chromosome loss and replicative senescence in telomerase-deficient budding yeast by Dnl4-dependent telomere fusion.

机译:交配类型通过依赖Dnl4的端粒融合来影响端粒酶缺陷型发芽酵母中的染色体丢失和复制衰老。

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As we age, the majority of our cells gradually lose the capacity to divide because of replicative senescence that results from the inability to replicate the ends of chromosomes. The timing of senescence is dependent on the length of telomeric DNA, which elicits a checkpoint signal when critically short. Critically short telomeres also become vulnerable to deleterious rearrangements, end-degradation and telomere-telomere fusions. Here we report a novel role of non-homologous end-joining (NHEJ), a pathway of double-strand break repair in influencing both the kinetics of replicative senescence and the rate of chromosome loss in telomerase-deficient Saccharomyces cerevisiae. In telomerase-deficient cells, the absence of NHEJ delays replicative senescence, decreases loss of viability during senescence, and suppresses senescence-associated chromosome loss and telomere-telomere fusion. Differences in mating-type gene expression in haploid and diploid cells affect NHEJ function, resulting in distinct kineticsof replicative senescence. These results suggest that the differences in the kinetics of replicative senescence in haploid and diploid telomerase-deficient yeast are determined by changes in NHEJ-dependent telomere fusion, perhaps through the initiation of the breakage-fusion-bridge cycle.
机译:随着年龄的增长,由于无法复制染色体末端而导致的复制衰老,使我们的大多数细胞逐渐失去分裂能力。衰老的时机取决于端粒DNA的长度,当严重短时,端粒会发出检查点信号。至关重要的是,短的端粒也容易受到有害的重排,末端降解和端粒-端粒融合的影响。在这里,我们报告了非同源末端连接(NHEJ)的新型作用,这是一条双链断裂修复途径,可影响端粒酶缺陷型酿酒酵母中复制衰老的动力学和染色体丢失的速率。在端粒酶缺陷的细胞中,NHEJ的缺乏会延缓复制衰老,降低衰老过程中活力的丧失,并抑制衰老相关的染色体丢失和端粒-端粒融合。单倍体和二倍体细胞中交配型基因表达的差异会影响NHEJ功能,从而导致不同的复制衰老动力学。这些结果表明,单倍体和二倍体端粒酶缺陷型酵母中复制衰老动力学的差异是由NHEJ依赖性端粒融合的变化决定的,也许是通过断裂-融合-桥循环的启动来确定的。

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