首页> 外文期刊>Nucleic Acids Research >Human cells lacking coilin and Cajal bodies are proficient in telomerase assembly, trafficking and telomere maintenance
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Human cells lacking coilin and Cajal bodies are proficient in telomerase assembly, trafficking and telomere maintenance

机译:缺少卷曲蛋白和Cajal体的人类细胞精通端粒酶组装,运输和端粒维持

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The RNA component of human telomerase (hTR) localizes to Cajal bodies, and it has been proposed that Cajal bodies play a role in the assembly of telomerase holoenzyme and telomerase trafficking. Here, the role of Cajal bodies was examined in Human cells deficient of coilin (i.e. coilin-knockout (KO) cells), in which no Cajal bodies are detected. In coilin-KO cells, a normal level of telomerase activity is detected and interactions between core factors of holoenzyme are preserved, indicating that telomerase assembly occurs in the absence of Cajal bodies. Moreover, dispersed hTR aggregates and forms foci specifically during S and G2 phase in coilin-KO cells. Colocalization of these hTR foci with telomeres implies proper telomerase trafficking, independent of Cajal bodies. Therefore, telomerase adds similar numbers of TTAGGG repeats to telomeres in coilin-KO and controls cells. Overexpression of TPP1-OB-fold blocks cell cycle-dependent formation of hTR foci and inhibits telomere extension. These findings suggest that telomerase assembly, trafficking and extension occur with normal efficiency in Cajal bodies deficient human cells. Thus, Cajal bodies, as such, are not essential in these processes, although it remains possible that non-coilin components of Cajal bodies and/or telomere binding proteins (e.g. TPP1) do play roles in telomerase biogenesis and telomere homeostasis.
机译:人类端粒酶(hTR)的RNA成分定位于Cajal体,有人提出Cajal体在端粒酶全酶和端粒酶运输的组装中发挥作用。在此,在缺乏线圈蛋白的人类细胞(即未检测到线圈蛋白的人细胞)(即线圈蛋白敲除(KO)细胞)中检查了Cajal体的作用。在线圈蛋白-KO细胞中,检测到正常水平的端粒酶活性,并且保留了全酶核心因子之间的相互作用,这表明端粒酶组装在没有Cajal体的情况下发生。此外,分散的hTR聚集并特别在卷曲蛋白-KO细胞的S和G2期形成病灶。这些hTR焦点与端粒的共定位意味着端粒酶的正确运输,而与Cajal体无关。因此,端粒酶将类似数量的TTAGGG重复序列添加到卷曲蛋白-KO中的端粒中并控制细胞。 TPP1-OB-fold的过表达阻止了hTR灶的细胞周期依赖性形成,并抑制了端粒的延伸。这些发现表明端粒酶组装,运输和延伸在缺乏人细胞的Cajal体中以正常效率发生。因此,尽管如此,尽管Cajal体的非螺旋蛋白成分和/或端粒结合蛋白(例如TPP1)仍然在端粒酶生物发生和端粒稳态中发挥作用,但Cajal体在这些过程中并不是必需的。

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