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Length-dependent processing of telomeres in the absence of telomerase

机译:在没有端粒酶的情况下端粒的长度依赖性加工

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In the absence of telomerase, telomeres progressively shorten with every round of DNA replication, leading to replicative senescence. In telomerase-deficient Saccharomyces cerevisiae, the shortest telomere triggers the onset of senescence by activating the DNA damage checkpoint and recruiting homologous recombination (HR) factors. Yet, the molecular structures that trigger this checkpoint and the mechanisms of repair have remained elusive. By tracking individual telomeres, we show that telomeres are subjected to different pathways depending on their length. We first demonstrate a progressive accumulation of subtelomeric single-stranded DNA (ssDNA) through 5'-3' resection as telomeres shorten. Thus, exposure of subtelomeric ssDNA could be the signal for cell cycle arrest in senescence. Strikingly, early after loss of telomerase, HR counteracts subtelomeric ssDNA accumulation rather than elongates telomeres. We then asked whether replication repair pathways contribute to this mechanism. We uncovered that Rad5, a DNA helicase/Ubiquitin ligase of the error-free branch of the DNA damage tolerance (DDT) pathway, associates with native telomeres and cooperates with HR in senescent cells. We propose that DDT acts in a length-independent manner, whereas an HR-based repair using the sister chromatid as a template buffers precocious 5'-3' resection at the shortest telomeres.
机译:在没有端粒酶的情况下,端粒随着每轮DNA复制而逐渐缩短,从而导致复制性衰老。在端粒酶缺陷型酿酒酵母中,最短的端粒通过激活DNA损伤检查点并募集同源重组(HR)因子来触发衰老的开始。然而,触发该检查点的分子结构和修复机制仍然难以捉摸。通过跟踪单个端粒,我们表明端粒取决于其长度受到不同的途径。我们首先证明随着端粒缩短,通过5'-3'切除的亚端粒单链DNA(ssDNA)逐渐积累。因此,亚端粒ssDNA的暴露可能是衰老中细胞周期停滞的信号。令人惊讶的是,在端粒酶丧失后的早期,HR抵消了端粒亚基ssDNA的积累,而不是延长了端粒。然后,我们询问复制修复途径是否有助于这种机制。我们发现Rad5是DNA损伤耐受(DDT)途径的无错分支的DNA解旋酶/泛素连接酶,与天然端粒缔合,并与衰老细胞中的HR协同作用。我们建议DDT以长度独立的方式起作用,而使用姐妹染色单体作为模板的基于HR的修复则可在最短的端粒处缓冲早熟的5'-3'切除。

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