TIMELESS与PARP1形成一种不同于其与TIPIN形成的复合物,并在DNA损伤反应中发挥作用。
TIMELESS Forms a Complex with PARP1 Distinct from Its Complex with TIPIN and Plays a Role in the DNA Damage Response.
作者信息
Young Lauren M, Marzio Antonio, Perez-Duran Pablo, Reid Dylan A, Meredith Daniel N, Roberti Domenico, Star Ayelet, Rothenberg Eli, Ueberheide Beatrix, Pagano Michele
机构信息
Department of Pathology, New York University School of Medicine, New York, NY 10016, USA; Perlmutter NYU Cancer Center, New York University School of Medicine, New York, NY 10016, USA.
Department of Pathology, New York University School of Medicine, New York, NY 10016, USA; Perlmutter NYU Cancer Center, New York University School of Medicine, New York, NY 10016, USA; Howard Hughes Medical Institute, New York University School of Medicine, New York, NY 10016, USA.
出版信息
Cell Rep. 2015 Oct 20;13(3):451-459. doi: 10.1016/j.celrep.2015.09.017. Epub 2015 Oct 8.
PARP1 is the main sensor of single- and double-strand breaks in DNA and, in building chains of poly(ADP-ribose), promotes the recruitment of many downstream signaling and effector proteins involved in the DNA damage response (DDR). We show a robust physical interaction between PARP1 and the replication fork protein TIMELESS, distinct from the known TIMELESS-TIPIN complex, which activates the intra-S phase checkpoint. TIMELESS recruitment to laser-induced sites of DNA damage is dependent on its binding to PARP1, but not PARP1 activity. We also find that the PARP1-TIMELESS complex contains a number of established PARP1 substrates, and TIMELESS mutants unable to bind PARP1 are impaired in their ability to bind PARP1 substrates. Further, PARP1 binding to certain substrates and their recruitment to DNA damage lesions is impaired by TIMELESS knockdown, and TIMELESS silencing significantly impairs DNA double-strand break repair. We hypothesize that TIMELESS cooperates in the PARP1-mediated DDR.
PARP1是DNA单链和双链断裂的主要传感器,在构建聚(ADP - 核糖)链时,促进许多参与DNA损伤反应(DDR)的下游信号和效应蛋白的募集。我们展示了PARP1与复制叉蛋白TIMELESS之间强大的物理相互作用,这与已知的激活S期内检查点的TIMELESS - TIPIN复合物不同。TIMELESS募集到激光诱导的DNA损伤位点取决于其与PARP1的结合,而非PARP1的活性。我们还发现PARP1 - TIMELESS复合物包含许多已确定的PARP1底物,无法结合PARP1的TIMELESS突变体结合PARP1底物的能力受损。此外,TIMELESS敲低会损害PARP1与某些底物的结合及其募集到DNA损伤位点,并且TIMELESS沉默会显著损害DNA双链断裂修复。我们推测TIMELESS在PARP1介导的DDR中发挥协同作用。