Department of Pharmacological Sciences, State University of New York at Stony Brook, Stony Brook, New York, 11794, USA.
Biochemistry and Structural Biology graduate program, Stony Brook University, New York 11794, USA.
DNA Repair (Amst). 2019 Sep;81:102657. doi: 10.1016/j.dnarep.2019.102657. Epub 2019 Jul 10.
Faithful duplication of the genome is critical for the survival of an organism and prevention of malignant transformation. Accurate replication of a large amount of genetic information in a timely manner is one of the most challenging cellular processes and is often perturbed by intrinsic and extrinsic barriers to DNA replication fork progression, a phenomenon referred to as DNA replication stress. Elevated DNA replication stress is a primary source of genomic instability and one of the key hallmarks of cancer. Therefore, targeting DNA replication stress is an emerging concept for cancer therapy. The replication machinery associated with PCNA and other regulatory factors coordinates the synthesis and repair of DNA strands at the replication fork. The dynamic interaction of replication protein complexes with DNA is essential for sensing and responding to various signaling events relevant to DNA replication and damage. Thus, the disruption of the spatiotemporal regulation of protein homeostasis at the replication fork impairs genome integrity, which often involves the deregulation of ubiquitin-mediated proteolytic signaling. Notably, emerging evidence has highlighted the role of the AAA+ATPase VCP/p97 in extracting ubiquitinated protein substrates from the chromatin and facilitating the turnover of genome surveillance factors during DNA replication and repair. Here, we review recent advances in our understanding of chromatin-associated degradation pathways at the replication fork and the implication of these findings for cancer therapy.
忠实复制基因组对于生物体的生存和恶性转化的预防至关重要。准确复制大量遗传信息并及时进行是最具挑战性的细胞过程之一,经常受到内在和外在的 DNA 复制叉进展障碍的干扰,这种现象称为 DNA 复制应激。升高的 DNA 复制应激是基因组不稳定性的主要来源,也是癌症的关键特征之一。因此,针对 DNA 复制应激是癌症治疗的新兴概念。与 PCNA 和其他调节因子相关的复制机制协调复制叉处 DNA 链的合成和修复。复制蛋白复合物与 DNA 的动态相互作用对于感知和响应与 DNA 复制和损伤相关的各种信号事件至关重要。因此,复制叉处蛋白质动态平衡的时空调节被破坏会损害基因组完整性,这通常涉及泛素介导的蛋白水解信号的失调。值得注意的是,新出现的证据强调了 AAA+ATPase VCP/p97 在从染色质中提取泛素化蛋白底物以及在 DNA 复制和修复过程中促进基因组监测因子周转方面的作用。在这里,我们回顾了对复制叉处与染色质相关的降解途径的理解的最新进展,以及这些发现对癌症治疗的意义。