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Impaired cohesion and homologous recombination during replicative aging in budding yeast

机译:发芽酵母复制老化过程中的内聚力和同源重组受损

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The causal relationship between genomic instability and replicative aging is unclear. We reveal here that genomic instability at the budding yeast ribosomal DNA (rDNA) locus increases during aging, potentially due to the reduced cohesion that we uncovered during aging caused by the reduced abundance of multiple cohesin subunits, promoting increased global chromosomal instability. In agreement, cohesion is lost during aging at other chromosomal locations in addition to the rDNA, including centromeres. The genomic instability in old cells is exacerbated by a defect in DNA double-strand break (DSB) repair that we uncovered in old yeast. This was due to limiting levels of key homologous recombination proteins because overexpression of Rad51 or Mre11 reduced the accumulation of DSBs and largely restored DSB repair in old cells. We propose that increased rDNA instability and the reduced DSB repair capacity of old cells contribute to the progressive accumulation of global chromosomal DNA breaks, where exceeding a threshold of genomic DNA damage ends the replicative life span.
机译:基因组不稳定和复制性衰老之间的因果关系尚不清楚。我们在这里揭示,发芽的酵母核糖体DNA(rDNA)基因座处的基因组不稳定性在衰老过程中会增加,这可能是由于我们在衰老过程中发现的凝聚力下降所致,这是由于多种黏着蛋白亚基的丰度降低而引起的,从而促进了整体染色体不稳定。一致地,在老化过程中,除了rDNA(包括着丝粒)外,其他染色体位置的内聚力也会丢失。我们在旧酵母中发现的DNA双链断裂(DSB)修复缺陷加剧了旧细胞的基因组不稳定性。这是由于限制了关键同源重组蛋白的水平,因为Rad51或Mre11的过表达减少了DSB的积累,并在很大程度上恢复了旧细胞中的DSB修复。我们建议增加rDNA的不稳定性和减少的旧细胞的DSB修复能力有助于全球染色体DNA断裂的逐步积累,其中超过基因组DNA损伤的阈值会终止复制寿命。

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