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Control of telomere length by a trimming mechanism that involves generation of t-circles

机译:通过修整机制控制端粒长度该修整机制涉及t环的生成

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摘要

Telomere lengths are maintained in many cancer cells by the ribonucleoprotein enzyme telomerase but can be further elongated by increasing telomerase activity through the overexpression of telomerase components. We report here that increased telomerase activity results in increased telomere length that eventually reaches a plateau, accompanied by the generation of telomere length heterogeneity and the accumulation of extrachromosomal telomeric repeat DNA, principally in the form of telomeric circles (t-circles). Telomeric DNA was observed in promyelocytic leukemia bodies, but no intertelomeric copying or telomere exchange events were identified, and there was no increase in telomere dysfunction-induced foci. These data indicate that human cells possess a mechanism to negatively regulate telomere length by trimming telomeric DNA from the chromosome ends, most likely by t-loop resolution to form t-circles. Additionally, these results indicate that some phenotypic characteristics attributed to alternative lengthening of telomeres (ALT) result from increased mean telomere length, rather than from the ALT mechanism itself.
机译:核糖核酸蛋白端粒酶可在许多癌细胞中维持端粒长度,但可通过端粒酶成分的过表达增加端粒酶活性来进一步延长端粒的长度。我们在这里报告,增加的端粒酶活性导致端粒长度增加,最终达到平台,并伴随着端粒长度异质性的产生和染色体外端粒重复DNA的积累,主要是端粒圈(t圈)的形式。在早幼粒细胞白血病体中观察到端粒DNA,但未发现端粒复制或端粒交换事件,端粒功能障碍引起的病灶也没有增加。这些数据表明,人类细胞具有一种通过修整染色体末端的端粒DNA负调节端粒长度的机制,最有可能通过t环拆分形成t环。此外,这些结果表明,归因于端粒(ALT)交替延长的某些表型特征是由于端粒平均长度增加而不是ALT机制本身引起的。

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