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SIRT6 interacts with TRF2 and promotes its degradation in response to DNA damage

机译:SIRT6与TRF2相互作用并响应DNA损伤促进其降解

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Telomere repeat binding factor 2 (TRF2) has been increasingly recognized to be involved in telomere maintenance and DNA damage response. Here, we show that TRF2 directly binds SIRT6 in a DNA independent manner and that this interaction is increased upon replication stress. Knockdown of SIRT6 upregulates TRF2 protein levels and counteracts its down-regulation during DNA damage response, leading to cell survival. Moreover, we report that SIRT6 deactetylates in vivo the TRFH domain of TRF2, which in turn, is ubiquitylated in vivo activating the ubiquitin-dependent proteolysis. Notably, overexpression of the TRF2(cT) mutant failed to be stabilized by SIRT6 depletion, demonstrating that the TRFH domain is required for its post-transcriptional modification. Finally, we report an inverse correlation between SIRT6 and TRF2 protein expression levels in a cohort of colon rectal cancer patients. Taken together our findings describe TRF2 as a novel SIRT6 substrate and demonstrate that acetylation of TRF2 plays a crucial role in the regulation of TRF2 protein stability, thus providing a new route for modulating its expression level during oncogenesis and damage response.
机译:端粒重复结合因子2(TRF2)越来越识别参与端粒维持和DNA损伤反应。这里,我们表明TRF2以DNA独立的方式直接结合SIRT6,并且在复制应力时增加这种相互作用。 SIRT6敲低上调TRF2蛋白水平并在DNA损伤反应期间抵消其下调,导致细胞存活。此外,我们认为SIRT6在体内DEACTETYLATE在TRF2的TRF2的TRFH结构域,这反过来是在体内激活泛素依赖性蛋白水解中的ubiquitylated。值得注意的是,TRF2(CT)突变体的过表达未被SIRT6耗竭稳定,证明其后转录后修饰需要TRFH结构域。最后,我们在结肠直肠癌患者队列中报告了SIRT6和TRF2蛋白表达水平之间的反比相关性。我们的研究结果将TRF2描述为新型SIRT6基质,并证明TRF2的乙酰化在TRF2蛋白稳定性的调节中起着至关重要的作用,从而提供了一种用于在血管生成期间调节其表达水平的新途径和损伤反应。

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