Institute of Cellular and Organismic Biology, Academia Sinica, Taipei, 11529, Taiwan.
J Biomed Sci. 2021 Jun 19;28(1):48. doi: 10.1186/s12929-021-00743-5.
Accurate and complete replication of the genome is essential not only for genome stability but also for cell viability. However, cells face constant threats to the replication process, such as spontaneous DNA modifications and DNA lesions from endogenous and external sources. Any obstacle that slows down replication forks or perturbs replication dynamics is generally considered to be a form of replication stress, and the past decade has seen numerous advances in our understanding of how cells respond to and resolve such challenges. Furthermore, recent studies have also uncovered links between defects in replication stress responses and genome instability or various diseases, such as cancer. Because replication stress takes place in the context of chromatin, histone dynamics play key roles in modulating fork progression and replication stress responses. Here, we summarize the current understanding of histone dynamics in replication stress, highlighting recent advances in the characterization of fork-protective mechanisms.
基因组的准确和完整复制不仅对于基因组稳定性至关重要,对于细胞活力也是如此。然而,细胞面临着复制过程不断受到威胁,例如自发的 DNA 修饰和来自内源性和外源性来源的 DNA 损伤。任何减缓复制叉速度或扰乱复制动力学的障碍通常被认为是一种复制压力形式,在过去的十年中,我们对细胞如何应对和解决这些挑战的理解有了许多进展。此外,最近的研究还揭示了复制压力反应缺陷与基因组不稳定性或各种疾病(如癌症)之间的联系。由于复制压力发生在染色质的背景下,组蛋白动力学在调节叉进展和复制压力反应方面起着关键作用。在这里,我们总结了目前对复制压力中组蛋白动力学的理解,重点介绍了叉保护机制特征描述的最新进展。