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Cell cycle-dependent transcription factors control the expression of yeast telomerase RNA

机译:细胞周期依赖性转录因子控制酵母端粒酶RNA的表达

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摘要

Telomerase is a specialized ribonucleoprotein that adds repeated DNA sequences to the ends of eukaryotic chromosomes to preserve genome integrity. Some secondary structure features of the telomerase RNA are very well conserved, and it serves as a central scaffold for the binding of associated proteins. The Saccharomyces cerevisiae telomerase RNA, TLC1, is found in very low copy number in the cell and is the limiting component of the known telomerase holoenzyme constituents. The reasons for this low abundance are unclear, but given that the RNA is very stable, transcriptional control mechanisms must be extremely important. Here we define the sequences forming the TLC1 promoter and identify the elements required for its low expression level, including enhancer and repressor elements. Within an enhancer element, we found consensus sites for Mbp1/Swi4 association, and chromatin immunoprecipitation (ChIP) assays confirmed the binding of Mbp1 and Swi4 to these sites of the TLC1 promoter. Furthermore, the enhancer element conferred cell cycle-dependent regulation to a reporter gene, and mutations in the Mbp1/Swi4 binding sites affected the levels of telomerase RNA and telomere length. Finally, ChIP experiments using a TLC1 RNA-binding protein as target showed cell cycle-dependent transcription of the TLC1 gene. These results indicate that the budding yeast TLC1 RNA is transcribed in a cell cycle-dependent fashion late in G1 and may be part of the S phase- regulated group of genes involved in DNA replication.
机译:端粒酶是一种特殊的核糖核蛋白,可将重复的DNA序列添加到真核染色体的末端,以保持基因组的完整性。端粒酶RNA的一些二级结构特征非常保守,并且它是结合相关蛋白的中心支架。酿酒酵母端粒酶RNA TLC1在细胞中的拷贝数非常低,是已知端粒酶全酶成分的限制性成分。这种低丰度的原因尚不清楚,但是鉴于RNA非常稳定,因此转录控制机制必须极其重要。在这里,我们定义了形成TLC1启动子的序列,并确定了其低表达水平所需的元件,包括增强子和阻遏物。在增强子元件内,我们发现了Mbp1 / Swi4缔合的共有位点,染色质免疫沉淀(ChIP)分析证实了Mbp1和Swi4与TLC1启动子的这些位点的结合。此外,增强子元件赋予报告基因细胞周期依赖性调节,并且Mbp1 / Swi4结合位点的突变影响端粒酶RNA的水平和端粒长度。最后,使用TLC1 RNA结合蛋白作为靶标的ChIP实验显示了TLC1基因的细胞周期依赖性转录。这些结果表明,出芽的酵母TLC1 RNA在G1晚期以细胞周期依赖性的方式转录,并且可能是参与DNA复制的S期调控基因组的一部分。

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