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首页> 外文期刊>Nucleic Acids Research >Non-coding telomeric and subtelomeric transcripts are differentially regulated by telomeric and heterochromatin assembly factors in fission yeast
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Non-coding telomeric and subtelomeric transcripts are differentially regulated by telomeric and heterochromatin assembly factors in fission yeast

机译:非编码端粒和亚端粒转录本受裂变酵母中端粒和异染色质装配因子的差异调节

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While telomere repeat-containing non-coding RNA has been identified in a variety of eukaryotes, its biological role is not yet clear. We have identified telomeric transcripts in fission yeast, a model system that combines precise genetic manipulability with telomeres remarkably similar to those of human. Like human and budding yeast, fission yeast harbours a population of telomeric RNA molecules containing G-rich telomeric repeats transcribed from the subtelomere to the telomere. In addition, we detect substantial levels of C-rich telomeric RNA whose appearance is independent of the RNA-dependent RNA polymerase, suggesting that the telomere repeats themselves serve as promoter sites; multiple distinct subtelomeric RNAs are also present. The regulation of these transcripts depends on the telomere-associated proteins Taz1 and Rap1, as deletion of taz1(+) or rap1(+) leads to increased levels of both telomere repeat-containing and subtelomeric transcripts. In contrast, loss of the heterochromatin proteins Swi6 or Clr4 or the telomerase regulator Rif1 results in elevated subtelomeric RNA levels while telomere-repeat containing transcript levels remain repressed. Coupled with the large body of knowledge surrounding the functions of telomeric and heterochromatin factors in fission yeast, these in vivo analyses suggest testable models for the roles of TERRA in telomere function.
机译:尽管已经在多种真核生物中鉴定出含有端粒重复序列的非编码RNA,但其生物学作用尚不清楚。我们在裂变酵母中鉴定了端粒转录本,该模型系统结合了精确的基因可操作性和端粒,与人类的端粒非常相似。像人和发芽酵母一样,裂变酵母也包含大量的端粒RNA分子,这些分子包含从亚端粒转录到端粒的富含G的端粒重复序列。此外,我们检测到大量的富含C的端粒RNA,其外观与依赖RNA的RNA聚合酶无关,这表明端粒自身重复可作为启动子位点。还存在多个不同的亚端粒RNA。这些转录物的调控取决于端粒相关蛋白Taz1和Rap1,因为taz1(+)或rap1(+)的缺失会导致端粒重复序列和亚端粒转录物的水平增加。相反,杂染色质蛋白Swi6或Clr4或端粒酶调节剂Rif1的缺失导致亚端粒RNA水平升高,而含有端粒重复序列的转录水平仍然受到抑制。结合围绕裂变酵母中端粒和异染色质因子功能的大量知识,这些体内分析为TERRA在端粒功能中的作用提供了可测试的模型。

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