端粒结合因子 1 可避免染色质重塑、重组以及复制依赖性断裂引发的小鼠端粒复制。
TRF1 averts chromatin remodelling, recombination and replication dependent-break induced replication at mouse telomeres.
机构信息
Telomere Replication and Stability group, Medical Research Council - London Institute of Medical Sciences, London, United Kingdom.
Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom.
出版信息
Elife. 2020 Jan 14;9:e49817. doi: 10.7554/eLife.49817.
Telomeres are a significant challenge to DNA replication and are prone to replication stress and telomere fragility. The shelterin component TRF1 facilitates telomere replication but the molecular mechanism remains uncertain. By interrogating the proteomic composition of telomeres, we show that mouse telomeres lacking TRF1 undergo protein composition reorganisation associated with the recruitment of DNA damage response and chromatin remodellers. Surprisingly, mTRF1 suppresses the accumulation of promyelocytic leukemia (PML) protein, BRCA1 and the SMC5/6 complex at telomeres, which is associated with increased Homologous Recombination (HR) and TERRA transcription. We uncovered a previously unappreciated role for mTRF1 in the suppression of telomere recombination, dependent on SMC5 and also POLD3 dependent Break Induced Replication at telomeres. We propose that TRF1 facilitates S-phase telomeric DNA synthesis to prevent illegitimate mitotic DNA recombination and chromatin rearrangement.
端粒是 DNA 复制的重大挑战,容易发生复制应激和端粒脆弱性。 shelterin 成分 TRF1 有助于端粒复制,但分子机制尚不确定。通过研究端粒的蛋白质组组成,我们发现缺乏 TRF1 的小鼠端粒经历了与招募 DNA 损伤反应和染色质重塑酶相关的蛋白质组成重排。令人惊讶的是,mTRF1 抑制了早幼粒细胞白血病 (PML) 蛋白、BRCA1 和 SMC5/6 复合物在端粒上的积累,这与同源重组 (HR) 和 TERRA 转录的增加有关。我们揭示了 mTRF1 在抑制端粒重组中的以前未被认识的作用,这依赖于 SMC5,也依赖于端粒上的 POLD3 依赖性断裂诱导复制。我们提出,TRF1 促进 S 期端粒 DNA 合成,以防止不合法的有丝分裂 DNA 重组和染色质重排。