首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Insertion in Fingers Domain in Human Telomerase Can Mediate Enzyme Processivity and Telomerase Recruitment to Telomeres in a TPP1-Dependent Manner
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The Insertion in Fingers Domain in Human Telomerase Can Mediate Enzyme Processivity and Telomerase Recruitment to Telomeres in a TPP1-Dependent Manner

机译:在人类端粒酶的手指域中插入可以介导TPP1依赖方式的酶加工性和端粒酶招募到端粒。

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摘要

In most human cancer cells, cellular immortalization relies on the activation and recruitment of telomerase to telomeres. The telomere-binding protein TPP1 and the TEN domain of the telomerase catalytic subunit TERT regulate telomerase recruitment. TERT contains a unique domain, called the insertion in fingers domain (IFD), located within the conserved reverse transcriptase domain. We report the role of specific hTERT IFD residues in the regulation of telomerase activity and processivity, recruitment to telomeres, and cell survival. One hTERT IFD variant, hTERT-L805A, with reduced activity and processivity showed impaired telomere association, which could be partially rescued by overexpression of TPP1-POT1. Another previously reported hTERT IFD mutant enzyme with similarly low levels of activity and processivity, hTERT-V791Y, displayed defects in telomere binding and was insensitive to TPP1-POT1 overexpression. Our results provide the first evidence that the IFD can mediate enzyme processivity and telomerase recruitment to telomeres in a TPP1-dependent manner. Moreover, unlike hTERT-V791Y, hTERT-V763S, a variant with reduced activity but increased processivity, and hTERT-L805A, could both immortalize limited-life-span cells, but cells expressing these two mutant enzymes displayed growth defects, increased apoptosis, DNA damage at telomeres, and short telomeres. Our results highlight the importance of the IFD in maintaining short telomeres and in cell survival.
机译:在大多数人类癌细胞中,细胞永生化依赖于端粒酶的激活和端粒的募集。端粒结合蛋白TPP1和端粒酶催化亚基TERT的TEN结构域调节端粒酶募集。 TERT包含一个独特的域,称为保守的逆转录酶域内的手指插入域(IFD)。我们报告了特定的hTERT IFD残基在端粒酶活性和持续性,端粒募集和细胞存活率的调节中的作用。一种具有降低的活性和合成能力的hTERT IFD变体hTERT-L805A显示出端粒缔合受损,可以通过过表达TPP1-POT1来部分挽救。先前报道的另一种hTERT-V791Y具有类似的低水平活性和可加工性的hTERT IFD突变酶hTERT-V791Y在端粒结合中显示缺陷,并且对TPP1-POT1过表达不敏感。我们的结果提供了第一个证据,表明IFD可以以TPP1依赖的方式介导酶的合成能力和端粒酶募集到端粒。此外,与hTERT-V791Y不同,hTERT-V763S是一种活性降低但生产率提高的变体,而hTERT-L805A都可以使有限寿命的细胞永生,但是表达这两种突变酶的细胞显示出生长缺陷,凋亡增加,DNA端粒和短端粒受损。我们的结果强调了IFD在维持端粒短和细胞存活中的重要性。

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