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Kinetics of DNA replication and telomerase reaction at a single-seeded telomere in human cells

机译:人细胞中单粒端粒DNA复制和端粒酶反应的动力学

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摘要

In most cancer cells, telomerase is activated to elongate telomere DNA, thereby ensuring numerous rounds of cell divisions. It is thus important to understand how telomerase and the replication fork react with telomeres in human cells. However, the highly polymorphic and repetitive nature of the nucleotide sequences in human subtelomeric regions hampers the precise analysis of sequential events taking place at telomeres in S phase. Here, we have established HeLa cells harboring a single-seeded telomere abutted by a unique subtelomere DNA sequence, which has enabled us to specifically focus on the seeded telomere. We have also developed a modified chromatin immunoprecipitation (ChIP) method that uses restriction digestion instead of sonication to fragment chromatin DNA (RES-ChIP), and a method for immunoprecipitating 5-bromo-2'-deoxyuridine (BrdU)-labeled single-stranded DNA by incubating DNA with anti-BrdU antibody in the nondenaturing condition. We have shown that DNA replication of the seeded telomere takes place during a relatively narrow time window in S phase, and telomerase synthesizes telomere DNA after the replication. Moreover, we have demonstrated that the telomerase catalytic subunit TERT associates with telomeres before telomere DNA replication. These results provide a temporal and spatial framework for understanding DNA replication and telomerase reaction at human telomeres.
机译:在大多数癌细胞中,端粒酶被激活以延长端粒DNA,从而确保许多轮细胞分裂。因此,了解端粒酶和复制叉如何与人细胞中的端粒反应非常重要。然而,人类亚端粒区域中核苷酸序列的高度多态性和重复性阻碍了对S期端粒发生的顺序事件的精确分析。在这里,我们建立了具有单种子端粒的HeLa细胞,该端粒与独特的亚端粒DNA序列邻接,这使我们能够专注于播种的端粒。我们还开发了一种改良的染色质免疫沉淀(ChIP)方法,该方法使用限制性酶切而非超声处理来破碎染色质DNA(RES-ChIP),以及一种免疫沉淀5-溴-2'-脱氧尿苷(BrdU)标记的单链方法通过在非变性条件下将DNA与抗BrdU抗体孵育来获得DNA。我们已经证明,种子端粒的DNA复制发生在S阶段相对狭窄的时间范围内,并且端粒酶在复制后会合成端粒DNA。而且,我们已经证明端粒酶催化亚基TERT在端粒DNA复制之前与端粒缔合。这些结果为理解人类端粒处的DNA复制和端粒酶反应提供了一个时空框架。

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