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PMID: 23389450 已发表 · ppublish 英语

A two-step mechanism for TRF2-mediated chromosome-end protection.

Nature ·第 494 卷 ·第 7438 期 ·2013-03-26

Okamoto Keiji, Bartocci Cristina, Ouzounov Iliana, Diedrich Jolene K, Yates John R, Denchi Eros Lazzerini

摘要

Mammalian telomeres repress DNA-damage activation at natural chromosome ends by recruiting specific inhibitors of the DNA-damage machinery that form a protective complex termed shelterin. Within this complex, TRF2 (also known as TERF2) has a crucial role in end protection through the suppression of ATM activation and the formation of end-to-end chromosome fusions. Here we address the molecular properties of TRF2 that are both necessary and sufficient to protect chromosome ends in mouse embryonic fibroblasts. Our data support a two-step mechanism for TRF2-mediated end protection. First, the dimerization domain of TRF2 is required to inhibit ATM activation, the key initial step involved in the activation of a DNA-damage response (DDR). Next, TRF2 independently suppresses the propagation of DNA-damage signalling downstream of ATM activation. This novel modulation of the DDR at telomeres occurs at the level of the E3 ubiquitin ligase RNF168 (ref. 3). Inhibition of RNF168 at telomeres involves the deubiquitinating enzyme BRCC3 and the ubiquitin ligase UBR5, and is sufficient to suppress chromosome end-to-end fusions. This two-step mechanism for TRF2-mediated end protection helps to explain the apparent paradox of frequent localization of DDR proteins at functional telomeres without concurrent induction of detrimental DNA-repair activities.

文献信息
期刊
Nature
期刊简称
Nature
发表日期
2013-03-26
收录日期
2013-02-28
更新日期
2016-11-25
语言
英语
国家/地区
England
NLM ID
0410462
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