Telomeres control human telomerase (TERT) expression through non-telomeric TRF2.

IF 6.4 1区 生物学 Q1 BIOLOGY
eLife Pub Date : 2025-09-30 DOI:10.7554/eLife.104045
Antara Sengupta, Soujanya Vinayagamurthy, Dristhi Soni, Rajlekha Deb, Ananda Kishore Mukherjee, Subhajit Dutta, Jushta Jaiswal, Mukta Yadav, Shalu Sharma, Sulochana Bagri, Shuvra Shekhar Roy, Priya Poonia, Ankita Singh, Divya Khanna, Amit Kumar Kumar Bhatt, Akshay Sharma, Suman Saurav, Rajender K Motiani, Shantanu Chowdhury
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引用次数: 0

Abstract

The function of the human telomerase reverse transcriptase (referred hereafter as TERT) in the synthesis and maintenance of chromosome ends, or telomeres, is widely understood. Whether and how telomeres, on the other hand, influence TERT regulation is relatively less studied. We found TERT was transcriptionally altered depending on telomere length (TL). This resulted from TL-dependent binding of TRF2 between telomeres and the TERT promoter. TERT promoter-bound TRF2 was non-telomeric and did not involve the looping of telomeres to the TERT promoter. Cell lines from different tissue types fibrosarcoma (HT1080), colon cancer (HCT116), and breast cancer (MDA-MB-231), engineered for either telomere elongation/shortening, gave an increase/decrease in TERT, respectively. Mechanistically, we show TERT promoter-bound non-telomeric TRF2 recruits the canonical PRC2-complex, inducing repressor histone H3K27-trimethylation in a TL-dependent fashion. This was further supported by TL-dependent promoter activity from an exogenously inserted TERT reporter. Increase in TL over days followed by a gradual decline, resulted in activation followed by repression of TERT in a concerted manner, further implicating TL as a key factor for TERT regulation. Notably, on reprogramming primary fibroblasts to induced pluripotent stem cells (iPSCs), TRF2 loss from the TERT promoter was evident along with telomere elongation and TERT upregulation. Conversely, on telomere shortening in iPSCs, TERT promoter-bound TRF2 was restored with a marked reduction in TERT, further supporting the causal role of TL in TERT transcription. Mechanisms of tight control of TERT by TL shown here are likely to have major implications in telomere-related physiologies, particularly, cancer, ageing, and pluripotency.

端粒通过非端粒TRF2控制人类端粒酶(TERT)的表达。
人类端粒酶逆转录酶(以下简称TERT)在染色体末端或端粒的合成和维持中的功能已被广泛了解。另一方面,端粒是否以及如何影响TERT调节的研究相对较少。我们发现TERT的转录改变取决于端粒长度(TL)。这是由于端粒和TERT启动子之间TRF2依赖于tl的结合。TERT启动子结合的TRF2是非端粒的,不涉及端粒与TERT启动子的环。来自不同组织类型的细胞系纤维肉瘤(HT1080),结肠癌(HCT116)和乳腺癌(MDA-MB-231),分别进行端粒延长/缩短的改造,分别增加/减少TERT。在机制上,我们发现TERT启动子结合的非端粒TRF2招募典型的prc2复合物,以tl依赖的方式诱导抑制组蛋白h3k27三甲基化。外源插入的TERT报告基因进一步支持了tl依赖启动子的活性。TL在数天内增加后逐渐下降,导致TERT以协调一致的方式激活后抑制,进一步表明TL是TERT调节的关键因素。值得注意的是,在将原代成纤维细胞重编程为诱导多能干细胞(iPSCs)的过程中,TERT启动子的TRF2缺失明显伴随着端粒延长和TERT上调。相反,在iPSCs的端粒缩短中,TERT启动子结合的TRF2恢复,TERT显著减少,进一步支持TL在TERT转录中的因果作用。这里显示的由TL严格控制TERT的机制可能在端粒相关生理,特别是癌症、衰老和多能性方面具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
eLife
eLife BIOLOGY-
CiteScore
12.90
自引率
3.90%
发文量
3122
审稿时长
17 weeks
期刊介绍: eLife is a distinguished, not-for-profit, peer-reviewed open access scientific journal that specializes in the fields of biomedical and life sciences. eLife is known for its selective publication process, which includes a variety of article types such as: Research Articles: Detailed reports of original research findings. Short Reports: Concise presentations of significant findings that do not warrant a full-length research article. Tools and Resources: Descriptions of new tools, technologies, or resources that facilitate scientific research. Research Advances: Brief reports on significant scientific advancements that have immediate implications for the field. Scientific Correspondence: Short communications that comment on or provide additional information related to published articles. Review Articles: Comprehensive overviews of a specific topic or field within the life sciences.
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