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Live-cell imaging reveals the dynamics and function of single-telomere TERRA molecules in cancer cells

机译:Live-Cell成像显示癌细胞中单端Terra分子的动态和功能

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摘要

Telomeres cap the ends of eukaryotic chromosomes, protecting them from degradation and erroneous recombination events which may lead to genome instability. Telomeres are transcribed giving rise to telomeric repeat-containing RNAs, called TERRA. The TERRA long noncoding RNAs have been proposed to play important roles in telomere biology, including heterochromatin formation and telomere length homeostasis. While TERRA RNAs are predominantly nuclear and localize at telomeres, little is known about the dynamics and function of TERRA molecules expressed from individual telomeres. Herein, we developed an assay to image endogenous TERRA molecules expressed from a single telomere in living human cancer cells. We show that single-telomere TERRA can be detected as TERRA RNA single particles which freely diffuse within the nucleus. Furthermore, TERRA molecules aggregate forming TERRA clusters. Three-dimensional size distribution and single particle tracking analyses revealed distinct sizes and dynamics for TERRA RNA single particles and clusters. Simultaneous time lapse confocal imaging of TERRA particles and telomeres showed that TERRA clusters transiently co-localize with telomeres. Finally, we used chemically modified antisense oligonucleotides to deplete TERRA molecules expressed from a single telomere. Single-telomere TERRA depletion resulted in increased DNA damage at telomeres and elsewhere in the genome. These results suggest that single-telomere TERRA transcripts participate in the maintenance of genomic integrity in human cancer cells.
机译:端粒盖真核染色体的末端,保护它们免于降解和错误的重组事件,这可能导致基因组不稳定性。转录的端粒转录引起含有端粒重复的RNA,称为Terra。已经提出了Terra Long Noncoding RNA在端粒生物学中发挥重要作用,包括异染色体形成和端粒长度稳态。虽然Terra RNA主要是针对端粒体的核核和定位,但对于从个体端粒表达的Terra分子的动态和功能知之甚少。在此,我们开发了从活性人癌细胞中的单端粒体表达的图像内源地区分子的测定。我们表明单端Terra可以被检测为在核内自由漫射的Terra RNA单颗粒。此外,Terra分子骨料形成Terra簇。三维尺寸分布和单粒跟踪分析显示了Terra RNA单颗粒和簇的不同尺寸和动态。 Terra粒子和端粒体的同时失误共焦成像表明,Terra群体与端粒瞬间共同定位。最后,我们使用化学改性的反义寡核苷酸来耗尽从单个端粒体表达的Terra分子。单端Terra耗尽导致端粒体和基因组的其他地方增加DNA损伤。这些结果表明,单端Terra转录物参与维持人癌细胞中的基因组完整性。

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