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Deregulated telomere transcription causes replication-dependent telomere shortening and promotes cellular senescence

机译:端粒转录失调导致复制依赖的端粒缩短,并促进细胞衰老

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摘要

Telomeres are transcribed into non-coding TElomeric Repeat containing RNAs (TERRA). We have employed a transcriptionally inducible telomere to investigate how telomere transcription affects telomere function in Saccharomyces cerevisiae. We report thattelomere shortening resulting from high levels of telomere transcription stems from a DNA replication-dependent loss of telomere tracts, which can occur independent of both telomerase inhibition and homologous recombination. We show that in order for telomere loss to occur, transcription must pass through the telomere tract itself producing a TERRA molecule. We demonstrate that increased telomere transcription of a single telomere leads to a premature cellular senescence in the absence of a telomere maintenance mechanism (telomerase and homology directed repair). Similar rapid senescence and telomere shortening are also seen in sir2A cells with compromised telomere maintenance, where TERRA levels are increased at natural telomeres. These data suggestthat telomere transcription must be tightly controlled to prevent telomere loss and early onset senescence.
机译:端粒被转录成含RNA的非编码端粒重复序列(TERRA)。我们已采用转录诱导性端粒来研究端粒转录如何影响酿酒酵母中的端粒功能。我们报告说,由于端粒转录水平高而导致的端粒缩短起因于端粒酶依赖于DNA复制的损失,这可能与端粒酶抑制和同源重组无关。我们表明,为了发生端粒丢失,转录必须通过端粒自身产生TERRA分子。我们证明,在没有端粒维持机制(端粒酶和同源性指导的修复)的情况下,单个端粒的端粒转录增加会导致细胞衰老。在端粒维持受损的sir2A细胞中也观察到了类似的快速衰老和端粒缩短,天然端粒中TERRA的水平升高。这些数据表明,必须严格控制端粒转录,以防止端粒丢失和早期发作衰老。

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