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首页> 外文期刊>Molecular and Cellular Biology >Tetrahymena POT1a Regulates Telomere Length and Prevents Activation of a Cell Cycle Checkpoint
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Tetrahymena POT1a Regulates Telomere Length and Prevents Activation of a Cell Cycle Checkpoint

机译:四膜虫POT1a调节端粒长度并阻止细胞周期检查点的激活

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摘要

The POT1/TEBP telomere proteins are a group of single-stranded DNA (ssDNA)-binding proteins that have long been assumed to protect the G overhang on the telomeric 3′ strand. We have found that the Tetrahymena thermophila genome contains two POT1 gene homologs, POT1a and POT1b. The POT1a gene is essential, but POT1b is not. We have generated a conditional POT1a cell line and shown that POT1a depletion results in a monster cell phenotype and growth arrest. However, G-overhang structure is essentially unchanged, indicating that POT1a is not required for overhang protection. In contrast, POT1a is required for telomere length regulation. After POT1a depletion, most telomeres elongate by 400 to 500 bp, but some increase by up to 10 kb. This elongation occurs in the absence of further cell division. The growth arrest caused by POT1a depletion can be reversed by reexpression of POT1a or addition of caffeine. Thus, POT1a is required to prevent a cell cycle checkpoint that is most likely mediated by ATM or ATR (ATM and ATR are protein kinases of the PI-3 protein kinase-like family). Our findings indicate that the essential function of POT1a is to prevent a catastrophic DNA damage response. This response may be activated when nontelomeric ssDNA-binding proteins bind and protect the G overhang.
机译:POT1 / TEBP端粒蛋白是一组单链DNA(ssDNA)结合蛋白,长期以来一直被认为可以保护端粒3'链上的G突出端。我们发现嗜热四膜虫基因组包含两个POT1基因同源物POT1a和POT1b。 POT1a基因是必不可少的,但POT1b不是必需的。我们已经生成了条件性POT1a细胞系,并显示POT1a耗尽会导致怪物细胞表型和生长停滞。但是,G悬垂结构基本上没有变化,表明悬垂保护不需要POT1a。相反,端粒长度调节需要POT1a。 POT1a耗尽后,大多数端粒延长了400至500 bp,但有些增加了10 kb。这种伸长发生在没有进一步的细胞分裂的情况下。由POT1a耗尽引起的生长停滞可以通过POT1a的重新表达或添加咖啡因来逆转。因此,需要POT1a来防止很可能是由ATM或ATR介导的细胞周期检查点(ATM和ATR是PI-3蛋白激酶样家族的蛋白激酶)。我们的发现表明,POT1a的基本功能是防止灾难性的DNA损伤反应。当非端粒的ssDNA结合蛋白结合并保护G突出端时,可能会激活此响应。

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