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首页> 外文期刊>Science Advances >SETDB1-dependent heterochromatin stimulates alternative lengthening of telomeres
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SETDB1-dependent heterochromatin stimulates alternative lengthening of telomeres

机译:SETDB1依赖异染色质刺激端粒的替代性延长

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摘要

Alternative lengthening of telomeres, or ALT, is a recombination-based process that maintains telomeres to render some cancer cells immortal. The prevailing view is that ALT is inhibited by heterochromatin because heterochromatin prevents recombination. To test this model, we used telomere-specific quantitative proteomics on cells with heterochromatin deficiencies. In contrast to expectations, we found that ALT does not result from a lack of heterochromatin; rather, ALT is a consequence of heterochromatin formation at telomeres, which is seeded by the histone methyltransferase SETDB1. Heterochromatin stimulates transcriptional elongation at telomeres together with the recruitment of recombination factors, while disrupting heterochromatin had the opposite effect. Consistently, loss of SETDB1, disrupts telomeric heterochromatin and abrogates ALT. Thus, inhibiting telomeric heterochromatin formation in ALT cells might offer a new therapeutic approach to cancer treatment.
机译:端粒或ALT的替代性延长是一种基于重组的过程,可维持端粒使某些癌细胞永生。普遍的观点是,异染色质可抑制ALT,因为异染色质可阻止重组。为了测试该模型,我们对具有异染色质缺陷的细胞使用了端粒特异性定量蛋白质组学。与预期相反,我们发现ALT并不是由于缺乏异染色质而引起的。相反,ALT是由组蛋白甲基转移酶SETDB1播种的端粒异染色质形成的结果。异染色质刺激端粒的转录伸长以及重组因子的募集,而破坏异染色质则具有相反的作用。一致地,SETDB1的丢失,破坏了端粒异染色质并消除了ALT。因此,抑制ALT细胞中端粒异染色质的形成可能为癌症治疗提供一种新的治疗方法。

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