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SMCHD1 促进 ATM 依赖性 DNA 损伤信号传递和未端粒加帽修复。

SMCHD1 promotes ATM-dependent DNA damage signaling and repair of uncapped telomeres.

机构信息

Swiss Institute for Experimental Cancer Research (ISREC), School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

The Francis Crick Institute, London, UK.

出版信息

EMBO J. 2020 Apr 1;39(7):e102668. doi: 10.15252/embj.2019102668. Epub 2020 Feb 21.

Abstract

Structural maintenance of chromosomes flexible hinge domain-containing protein 1 (SMCHD1) has been implicated in X-chromosome inactivation, imprinting, and DNA damage repair, and mutations in SMCHD1 can cause facioscapulohumeral muscular dystrophy. More recently, SMCHD1 has also been identified as a component of telomeric chromatin. Here, we report that SMCHD1 is required for DNA damage signaling and non-homologous end joining (NHEJ) at unprotected telomeres. Co-depletion of SMCHD1 and the shelterin subunit TRF2 reduced telomeric 3'-overhang removal in time-course experiments, as well as the number of chromosome end fusions. SMCHD1-deficient cells displayed reduced ATM S1981 phosphorylation and diminished formation of γH2AX foci and of 53BP1-containing telomere dysfunction-induced foci (TIFs), indicating defects in DNA damage checkpoint signaling. Removal of TPP1 and subsequent activation of ATR signaling rescued telomere fusion events in TRF2-depleted SMCHD1 knockout cells. Together, these data indicate that SMCHD1 depletion reduces telomere fusions in TRF2-depleted cells due to defects in ATM-dependent checkpoint signaling and that SMCHD1 mediates DNA damage response activation upstream of ATM phosphorylation at uncapped telomeres.

摘要

结构维持染色体柔性铰链域蛋白 1(SMCHD1)已被牵连到 X 染色体失活、印迹和 DNA 损伤修复中,SMCHD1 的突变可导致面肩肱型肌营养不良症。最近,SMCHD1 也被确定为端粒染色质的一个组成部分。在这里,我们报告 SMCHD1 是未受保护端粒处的 DNA 损伤信号转导和非同源末端连接(NHEJ)所必需的。SMCHD1 和庇护蛋白亚基 TRF2 的共同耗尽减少了端粒 3'-突出物在时间进程实验中的去除,以及染色体末端融合的数量。SMCHD1 缺陷细胞显示 ATM S1981 磷酸化减少,γH2AX 焦点和含有 53BP1 的端粒功能障碍诱导焦点(TIF)的形成减少,表明 DNA 损伤检查点信号转导缺陷。TPP1 的去除和随后的 ATR 信号激活挽救了 TRF2 耗尽的 SMCHD1 敲除细胞中的端粒融合事件。总之,这些数据表明,SMCHD1 的耗竭减少了 TRF2 耗尽细胞中的端粒融合,这是由于 ATM 依赖性检查点信号转导缺陷所致,并且 SMCHD1 在 uncapped 端粒处的 ATM 磷酸化的上游介导 DNA 损伤反应的激活。

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