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TERRA Expression Levels Do Not Correlate with Telomere Length and Radiation Sensitivity in Human Cancer Cell Lines

机译:TERRA表达水平与人类癌细胞系中的端粒长度和辐射敏感性不相关

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摘要

Mammalian telomeres are transcribed into long non-coding telomeric repeat-containing RNA (TERRA) molecules that seem to play a role in the maintenance of telomere stability. In human cells, CpG-island promoters drive TERRA transcription and are regulated by methylation. It was suggested that the amount of TERRA may be related to telomere length. To test this hypothesis we measured telomere length and TERRA levels in single clones isolated from five human cell lines: HeLa (cervical carcinoma), BRC-230 (breast cancer), AKG and GK2 (gastric cancers), and GM847 (SV40 immortalized skin fibroblasts). However, these two parameters did not correlate with each other. Moreover, cell survival to γ-rays did not show a significant variation among the clones, suggesting that, in this cellular system, the intra-population variability in telomere length and TERRA levels does not influence sensitivity to ionizing radiation. This conclusion was supported by the observation that in a cell line in which telomeres were greatly elongated by the ectopic expression of telomerase, TERRA expression levels and radiation sensitivity were similar to the parental HeLa cell line.
机译:哺乳动物端粒被转录成长的非编码端粒重复序列RNA(TERRA)分子,似乎在维持端粒稳定性中发挥作用。在人类细胞中,CpG岛启动子驱动TERRA转录并受甲基化调节。有人提出TERRA的量可能与端粒长度有关。为了验证这一假设,我们测量了从五个人类细胞系分离的单个克隆中的端粒长度和TERRA水平:HeLa(宫颈癌),BRC-230(乳腺癌),AKG和GK2(胃癌)以及GM847(SV40永生化皮肤成纤维细胞) )。但是,这两个参数彼此不相关。而且,细胞对γ射线的存活率在这些克隆之间没有显示出明显的变化,这表明,在这种细胞系统中,端粒长度和TERRA水平的种群内变异性不会影响对电离辐射的敏感性。这一观察结果得到以下观察结果的支持:在端粒酶异位表达使端粒大大延长的细胞系中,TERRA表达水平和放射敏感性与亲代HeLa细胞系相似。

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