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Rad59促进短端粒对Y'元件的获取,延缓衰老的发生。

Rad59-facilitated acquisition of Y' elements by short telomeres delays the onset of senescence.

作者信息

Churikov Dmitri, Charifi Ferose, Simon Marie-Noëlle, Géli Vincent

机构信息

Marseille Cancer Research Center (CRCM), U1068 Inserm, UMR7258 CNRS, Aix Marseille University, Institut Paoli-Calmettes, LNCC (Equipe labellisée), Marseille, France.

出版信息

PLoS Genet. 2014 Nov 6;10(11):e1004736. doi: 10.1371/journal.pgen.1004736. eCollection 2014 Nov.

Abstract

Telomerase-negative yeasts survive via one of the two Rad52-dependent recombination pathways, which have distinct genetic requirements. Although the telomere pattern of type I and type II survivors is well characterized, the mechanistic details of short telomere rearrangement into highly evolved pattern observed in survivors are still missing. Here, we analyze immediate events taking place at the abruptly shortened VII-L and native telomeres. We show that short telomeres engage in pairing with internal Rap1-bound TG1-3-like tracts present between subtelomeric X and Y' elements, which is followed by BIR-mediated non-reciprocal translocation of Y' element and terminal TG1-3 repeats from the donor end onto the shortened telomere. We found that choice of the Y' donor was not random, since both engineered telomere VII-L and native VI-R acquired Y' elements from partially overlapping sets of specific chromosome ends. Although short telomere repair was associated with transient delay in cell divisions, Y' translocation on native telomeres did not require Mec1-dependent checkpoint. Furthermore, the homeologous pairing between the terminal TG1-3 repeats at VII-L and internal repeats on other chromosome ends was largely independent of Rad51, but instead it was facilitated by Rad59 that stimulates Rad52 strand annealing activity. Therefore, Y' translocation events taking place during presenescence are genetically separable from Rad51-dependent Y' amplification process that occurs later during type I survivor formation. We show that Rad59-facilitated Y' translocations on X-only telomeres delay the onset of senescence while preparing ground for type I survivor formation.

摘要

端粒酶阴性酵母通过两种依赖于Rad52的重组途径之一存活,这两种途径具有不同的遗传要求。尽管I型和II型存活者的端粒模式已得到充分表征,但在存活者中观察到的短端粒重排为高度进化模式的机制细节仍不清楚。在这里,我们分析了在突然缩短的VII-L和天然端粒上发生的即时事件。我们表明,短端粒与位于亚端粒X和Y'元件之间的内部Rap1结合的TG1-3样序列配对,随后是BIR介导的Y'元件和末端TG1-3重复序列从供体端向缩短的端粒的非相互易位。我们发现Y'供体的选择不是随机的,因为工程化的端粒VII-L和天然的VI-R都从部分重叠的特定染色体末端集合中获得了Y'元件。尽管短端粒修复与细胞分裂的短暂延迟有关,但天然端粒上的Y'易位不需要Mec1依赖的检查点。此外,VII-L处的末端TG1-3重复序列与其他染色体末端的内部重复序列之间的同源配对在很大程度上不依赖于Rad51,而是由刺激Rad52链退火活性的Rad59促进。因此,在衰老前期发生的Y'易位事件在遗传上与I型存活者形成后期发生的依赖于Rad51的Y'扩增过程是可分离的。我们表明,Rad59促进的仅X端粒上的Y'易位延迟了衰老的开始,同时为I型存活者的形成奠定了基础。

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