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Dynamics of human telomerase recruitment depend on template-telomere base pairing

机译:人体端粒酶招聘的动态取决于模板 - 端粒底座配对

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摘要

The reverse transcriptase telomerase adds telomeric repeats to chromosome ends to counteract telomere shortening and thereby assures genomic stability in dividing human cells. Key parameters in telomere homeostasis are the frequency with which telomerase engages the chromosome end and the number of telomeric repeats it adds during each association event. To study telomere elongation in vivo, we have established a live-cell imaging assay to track individual telomerase ribonucleoproteins in CRISPR-edited HeLa cells. Using this assay and the drug imetelstat, which is a competitive inhibitor of telomeric DNA binding, we demonstrate that stable association of telomerase with the single-stranded overhang of the chromosome end requires telomerase-DNA base pairing. Furthermore, we show that telomerase processivity contributes to telomere elongation in vivo. Together, these findings provide new insight into the dynamics of telomerase recruitment and the importance of processivity in maintaining telomere length in human cancer cells.
机译:逆转录酶端粒酶将端粒重复添加到染色体末端以抵消端粒缩短,从而确保在分割人细胞中的基因组稳定性。端粒稳态中的关键参数是端粒酶接合染色体末端的频率,并且在每个关联事件期间增加的端粒重复的数量。为了研究体内的端粒伸长率,我们已经建立了活细胞成像测定,以跟踪Crispr-edited的Hela细胞中的单个端粒酶核糖蛋白酶。使用该测定和药物Imetelstat,其是一种竞争性DNA结合的竞争性抑制剂,我们证明了端粒酶与染色体末端的单链突出的稳定关联需要端粒酶-DNA碱基配对。此外,我们表明端粒酶处理能力有助于体内端粒伸长率。这些发现在一起,对端粒酶募集的动态和处理能力在维持人类癌细胞中的端粒长度的重要性提供了新的洞察。

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