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Direct involvement of the TEN domain at the active site of human telomerase

机译:TEN域直接参与人类端粒酶的活性位点

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摘要

Telomerase is a ribonucleoprotein that adds DNA to the ends of chromosomes. The catalytic protein subunit of telomerase (TERT) contains an N-terminal domain (TEN) that is important for activity and processivity. Here we describe a mutation in the TEN domain of human TERT that results in a greatly increased primer K-d, supporting a role for the TEN domain in DNA affinity. Measurement of enzyme kinetic parameters has revealed that this mutant enzyme is also defective in dNTP polymerization, particularly while copying position 51 of the RNA template. The catalytic defect is independent of the presence of binding interactions at the 5'-region of the DNA primer, and is not a defect in translocation rate. These data suggest that the TEN domain is involved in conformational changes required to position the 3'-end of the primer in the active site during nucleotide addition, a function which is distinct from the role of the TEN domain in providing DNA binding affinity.
机译:端粒酶是一种核糖核酸蛋白,可将DNA添加到染色体末端。端粒酶(TERT)的催化蛋白亚基包含一个N末端结构域(TEN),对活性和合成能力很重要。在这里,我们描述了人TERT的TEN结构域中的突变,该突变导致引物K-d大大增加,从而支持TEN结构域在DNA亲和力中的作用。酶动力学参数的测量表明,该突变酶在dNTP聚合反应中也存在缺陷,特别是在复制RNA模板的51位时。催化缺陷与DNA引物5'区域上结合相互作用的存在无关,并且不是转运速率的缺陷。这些数据表明,TEN结构域参与在核苷酸添加过程中将引物的3'-末端置于活性位点所需的构象变化,该功能不同于TEN结构域在提供DNA结合亲和力中的作用。

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