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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >Cell cycle–dependent spatial segregation of telomerase from sites of DNA damage
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Cell cycle–dependent spatial segregation of telomerase from sites of DNA damage

机译:细胞周期依赖的端粒酶与DNA损伤位点的空间分离

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Telomerase can generate a novel telomere at DNA double-strand breaks (DSBs), an event called de novo telomere addition. How this activity is suppressed remains unclear. Combining single-molecule imaging and deep sequencing, we show that the budding yeast telomerase RNA ( TLC1 RNA) is spatially segregated to the nucleolus and excluded from sites of DNA repair in a cell cycle–dependent manner. Although TLC1 RNA accumulates in the nucleoplasm in G1/S, Pif1 activity promotes TLC1 RNA localization in the nucleolus in G2/M. In the presence of DSBs, TLC1 RNA remains nucleolar in most G2/M cells but accumulates in the nucleoplasm and colocalizes with DSBs in rad52Δ cells, leading to de novo telomere additions. Nucleoplasmic accumulation of TLC1 RNA depends on Cdc13 localization at DSBs and on the SUMO ligase Siz1, which is required for de novo telomere addition in rad52Δ cells. This study reveals novel roles for Pif1, Rad52, and Siz1-dependent sumoylation in the spatial exclusion of telomerase from sites of DNA repair.
机译:端粒酶可以在DNA双链断裂(DSB)处产生新的端粒,这一事件称为从头端粒加成。如何抑制这种活动仍不清楚。结合单分子成像和深度测序,我们显示出发芽的酵母端粒酶RNA(TLC1 RNA)在空间上与核仁隔开,并以细胞周期依赖性方式从DNA修复位点中排除。尽管TLC1 RNA积累在G1 / S的核质中,但是Pif1活性促进TLC1 RNA在G2 / M的核仁中的定位。在存在DSB的情况下,TLC1 RNA在大多数G2 / M细胞中仍为核仁,但在核质中积累并与rad52Δ细胞中的DSBs共定位,从而导致从头端粒的添加。 TLC1 RNA的核质积累取决于Cdc13在DSB的定位和SUMO连接酶Siz1,这是在rad52Δ细胞中从头添加端粒所必需的。这项研究揭示了Pif1,Rad52和Siz1依赖的sumoylation在端粒酶从DNA修复位点的空间排斥中的新作用。

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