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Distinct Requirements for Pot1 in Limiting Telomere Length and Maintaining Chromosome Stability

机译:Pot1在限制端粒长度和保持染色体稳定性方面的不同要求

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The fission yeast Pot1 (protection of telomeres) protein binds to the single-stranded extensions at the ends of telomeres, where its presence is critical for the maintenance of linear chromosomes. Homologs of Pot1 have been identified in a wide variety of eukaryotes, including plants, animals, and humans. We now show that Pot1 plays dual roles in telomere length regulation and chromosome end protection. Using a series of Pot1 truncation mutants, we have defined distinct areas of the protein required for chromosome stability and for limiting access to telomere ends by telomerase. We provide evidence that a large portion of Pot1, including the N-terminal DNA binding domain and amino acids close to the C terminus, is essential for its protective function. C-terminal Pot1 fragments were found to exert a dominant-negative effect by displacing endogenous Pot1 from telomeres. Reducing telomere-bound Pot1 in this manner resulted in dramatic lengthening of the telomere tract. Upon further reduction of Pot1 at telomeres, the opposite phenotype was observed: loss of telomeric DNA and chromosome end fusions. Our results demonstrate that cells must carefully regulate the amount of telomere-bound Pot1 to differentiate between allowing access to telomerase and catastrophic loss of telomeres.
机译:裂变酵母Pot1(端粒保护)蛋白与端粒末端的单链延伸结合,其中端粒的存在对于维持线性染色体至关重要。已经在包括植物,动物和人类在内的各种真核生物中鉴定了Pot1的同源物。现在,我们显示Pot1在端粒长度调节和染色体末端保护中起双重作用。使用一系列的Pot1截断突变体,我们定义了染色体稳定和限制端粒酶进入端粒末端所需的蛋白质的不同区域。我们提供的证据表明,Pot1的大部分(包括N末端DNA结合结构域和靠近C末端的氨基酸)对其保护功能至关重要。发现C端Pot1片段通过从端粒置换内源性Pot1发挥显性负作用。以这种方式减少端粒结合的Pot1导致端粒束显着延长。在端粒上的Pot1进一步减少后,观察到相反的表型:端粒DNA丢失和染色体末端融合。我们的结果表明,细胞必须仔细调节端粒结合的Pot1的量,以区分允许访问端粒酶和灾难性损失的端粒。

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