Schoeftner Stefan, Blasco Maria A
Telomeres and Telomerase Group, Molecular Oncology Program, Spanish National Cancer Centre (CNIO), 28029 Madrid, Spain.
Nat Cell Biol. 2008 Feb;10(2):228-36. doi: 10.1038/ncb1685. Epub 2007 Dec 23.
Mammalian telomeres consist of non-coding TTAGGG repeats that are bound by the multi-protein complex 'shelterin', thus protecting chromosome ends from DNA repair mechanisms and degradation. Mammalian telomeric chromatin is enriched for the constitutive heterochromatin marks H3K9me3, H4K20me3 and HP1 (refs 2, 3, 4, 5, 6, 7). Similar to pericentric heterochromatin, telomeric heterochromatin is thought to be fundamental for the maintenance of chromosomal integrity. Here, we report that telomeric repeats are transcribed by DNA-dependent RNA polymerase II, which, in turn, interacts with the TRF1 shelterin protein. Telomeric RNAs (TelRNAs) contain UUAGGG repeats, are polyadenylated and are transcribed from the telomeric C-rich strand. Transcription of mammalian telomeres is regulated by several mechanisms, including developmental status, telomere length, cellular stress, tumour stage and chromatin structure. Using RNA-flourescent in situ hybridization (FISH), we show that TelRNAs are novel structural components of telomeric chromatin. Importantly, we provide evidence that TelRNAs block the activity of telomerase in vitro, suggesting that TelRNAs may regulate telomerase activity at chromosome ends. Our results indicate that TelRNAs are novel components of mammalian telomeres, which are anticipated to be fundamental for understanding telomere biology and telomere-related diseases, such as cancer and ageing.
哺乳动物的端粒由非编码的 TTAGGG 重复序列组成,这些序列由多蛋白复合体“端粒保护蛋白复合体”(shelterin)结合,从而保护染色体末端免受 DNA 修复机制和降解的影响。哺乳动物的端粒染色质富含组成型异染色质标记 H3K9me3、H4K20me3 和 HP1(参考文献 2、3、4、5、6、7)。与着丝粒周围异染色质类似,端粒异染色质被认为对于维持染色体完整性至关重要。在此,我们报告端粒重复序列由依赖 DNA 的 RNA 聚合酶 II 转录,该酶进而与端粒保护蛋白 1(TRF1)相互作用。端粒 RNA(TelRNAs)包含 UUAGGG 重复序列,进行了多聚腺苷酸化修饰,并且从富含 C 的端粒链转录而来。哺乳动物端粒的转录受多种机制调控,包括发育状态、端粒长度、细胞应激、肿瘤分期和染色质结构。使用 RNA 荧光原位杂交(FISH)技术,我们表明 TelRNAs 是端粒染色质的新型结构成分。重要的是,我们提供证据表明 TelRNAs 在体外阻断端粒酶的活性,这表明 TelRNAs 可能在染色体末端调节端粒酶活性。我们的结果表明 TelRNAs 是哺乳动物端粒的新型成分,预计对于理解端粒生物学以及端粒相关疾病(如癌症和衰老)至关重要。