Sang Pau Biak, Jaiswal Rishi K, Lyu Xinxing, Chai Weihang
Department of Cancer Biology, Cardinal Bernardin Cancer Center, Loyola University Chicago Stritch School of Medicine, Maywood, IL, USA.
Department of Microbiology, University of Delhi South Campus, New Delhi, India.
Nucleic Acids Res. 2024 Apr 24;52(7):3778-3793. doi: 10.1093/nar/gkae078.
DNA replication stress, caused by various endogenous and exogenous agents, halt or stall DNA replication progression. Cells have developed diverse mechanisms to tolerate and overcome replication stress, enabling them to continue replication. One effective strategy to overcome stalled replication involves skipping the DNA lesion using a specialized polymerase known as PrimPol, which reinitiates DNA synthesis downstream of the damage. However, the mechanism regulating PrimPol repriming is largely unclear. In this study, we observe that knockdown of STN1 or CTC1, components of the CTC1/STN1/TEN1 complex, leads to enhanced replication progression following UV exposure. We find that such increased replication is dependent on PrimPol, and PrimPol recruitment to stalled forks increases upon CST depletion. Moreover, we find that p21 is upregulated in STN1-depleted cells in a p53-independent manner, and p21 depletion restores normal replication rates caused by STN1 deficiency. We identify that p21 interacts with PrimPol, and STN1 depletion stimulates p21-PrimPol interaction and facilitates PrimPol recruitment to stalled forks. Our findings reveal a previously undescribed interplay between CST, PrimPol and p21 in promoting repriming in response to stalled replication, and shed light on the regulation of PrimPol repriming at stalled forks.
由各种内源性和外源性因素引起的DNA复制应激会阻止或延缓DNA复制进程。细胞已经发展出多种机制来耐受和克服复制应激,使其能够继续复制。一种克服停滞复制的有效策略是使用一种名为PrimPol的特殊聚合酶跳过DNA损伤,该酶在损伤下游重新启动DNA合成。然而,调节PrimPol重新引发的机制在很大程度上尚不清楚。在本研究中,我们观察到敲低CTC1/STN1/TEN1复合体的组分STN1或CTC1会导致紫外线照射后复制进程增强。我们发现这种复制增加依赖于PrimPol,并且在CST缺失时,PrimPol募集到停滞的复制叉上会增加。此外,我们发现p21在STN1缺失的细胞中以p53非依赖的方式上调,并且p21缺失可恢复由STN1缺陷导致的正常复制速率。我们确定p21与PrimPol相互作用,并且STN1缺失会刺激p21-PrimPol相互作用并促进PrimPol募集到停滞的复制叉上。我们的研究结果揭示了CST、PrimPol和p21之间在促进对停滞复制的重新引发方面以前未描述的相互作用,并阐明了在停滞复制叉处PrimPol重新引发的调控机制。