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Transcription regulates telomere dynamics in human cancer cells

机译:转录调节人类癌细胞中的端粒动力学

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Telomeres are nucleoprotein structures capping the physical ends of linear eukaryotic chromosomes. Although largely heterochromatic, telomeres are transcribed into telomeric repeat-containing RNA (TERRA) molecules by RNA polymerase II. The functions associated with telomere transcription and TERRA remain ill defined. Here we show that the transcriptional activity of human telomeres directly regulates their movement during interphase. We find that chemical inhibition of global transcription dampens telomere motion, while global stimulation promotes it. Likewise, when DNA methyltransferase enzymes are deleted to augment telomere transcription, we observe increased telomere movement. Finally, using a cell line engineered with a unique transcriptionally inducible telomere, we show that transcription of one specific telomere stimulates only its own dynamics without overtly affecting its stability or its length. We reveal a new and unforeseen function for telomere transcription as a regulator of telomere motion, and speculate on the intriguing possibility that transcription-dependent telomere motion sustains the maintenance of functional and dysfunctional telomeres. Published by Cold Spring Harbor Laboratory Press.
机译:端粒是核糖蛋白结构,覆盖线性真核染色体的物理末端。尽管端粒很大程度上是异色的,但端粒通过RNA聚合酶II转录为含端粒重复序列的RNA(TERRA)分子。与端粒转录和TERRA相关的功能仍然不清楚。在这里,我们显示了人类端粒的转录活性直接调节其在相间的运动。我们发现化学抑制全局转录抑制端粒运动,而全局刺激促进它。同样,当DNA甲基转移酶被删除以增加端粒转录时,我们观察到端粒运动增加。最后,使用经过工程改造的具有独特转录诱导性端粒的细胞系,我们表明一种特定端粒的转录仅刺激其自身的动力学,而不会明显影响其稳定性或长度。我们揭示了端粒转录的新的和不可预见的功能,作为端粒运动的调节剂,并推测了依赖转录的端粒运动维持功能性和功能失调的端粒维持的有趣的可能性。由冷泉港实验室出版社出版。

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