Instituto de Biología Funcional y Genómica, CSIC/USAL Salamanca, Spain.
Front Genet. 2013 Mar 13;4:26. doi: 10.3389/fgene.2013.00026. eCollection 2013.
Conditions challenging replication fork progression, collectively referred to as replication stress, represent a major source of genomic instability and are associated to cancer onset. The replication checkpoint, a specialized branch of the DNA damage checkpoint, monitors fork problems, and triggers a cellular response aimed at preserving genome integrity. Here, we review the mechanisms by which the replication checkpoint monitors and responds to replication stress, focusing on the checkpoint-mediated pathways contributing to protect replication fork integrity. We discuss how cells achieve checkpoint signaling inactivation once replication stress is overcome and how a failure to timely revert checkpoint-mediated changes in cellular physiology might impact on replication dynamics and genome integrity. We also highlight the checkpoint function as an anti-cancer barrier preventing cells malignant transformation following oncogene-induced replication stress.
条件挑战复制叉进展,统称为复制压力,是基因组不稳定性的主要来源,并与癌症的发生有关。复制检查点是 DNA 损伤检查点的一个专门分支,它监测叉问题,并触发旨在保护基因组完整性的细胞反应。在这里,我们回顾了复制检查点监测和应对复制压力的机制,重点介绍了有助于保护复制叉完整性的检查点介导途径。我们讨论了细胞在克服复制压力后如何实现检查点信号失活,以及细胞生理学中检查点介导的变化未能及时逆转可能对复制动态和基因组完整性产生的影响。我们还强调了检查点功能作为抗癌屏障,防止细胞在致癌基因诱导的复制压力下发生恶性转化。