Zhu Qiong, Chang Yuxiao, Yang Jin, Wei Quanfang
Battalion Two of Cadet Brigade, Third Military Medical University, Chongqing 400038, P.R. China.
Department of Cell Biology, Third Military Medical University, Chongqing 400038, P.R. China.
Oncol Lett. 2014 May;7(5):1363-1369. doi: 10.3892/ol.2014.1943. Epub 2014 Mar 5.
Previous studies have shown that the post-translational modifications of proliferating cell nuclear antigen (PCNA) may be crucial in influencing the cellular choice between different pathways, such as the cell cycle checkpoint, DNA repair or apoptosis pathways, in order to maintain genomic stability. DNA damage leads to replication stress and the subsequent induction of PCNA modification by small ubiquitin (Ub)-related modifiers and Ub, which has been identified to affect multiple biological processes of genomic DNA. Thus far, much has been learned concerning the behavior of modified PCNA as a key signal integrator in response to DNA damage. In humans and yeast, modified PCNA activates DNA damage bypass via an error-prone or error-free pathway to prevent the breakage of DNA replication forks, which may potentially induce double-strand breaks and subsequent chromosomal rearrangements. However, the exact mechanisms by which these pathways work and by what means the modified PCNA is involved in these processes remain elusive. Thus, the improved understanding of PCNA modification and its implications for DNA damage response may provide us with more insight into the mechanisms by which human cells regulate aberrant recombination events, and cancer initiation and development. The present review focuses on the post-translational modifications of PCNA and its important functions in mediating mammalian cellular response to different types of DNA damage.
先前的研究表明,增殖细胞核抗原(PCNA)的翻译后修饰可能在影响细胞在不同途径(如细胞周期检查点、DNA修复或凋亡途径)之间的选择中起关键作用,以维持基因组稳定性。DNA损伤会导致复制应激,并随后由小泛素(Ub)相关修饰因子和Ub诱导PCNA修饰,已确定其会影响基因组DNA的多个生物学过程。到目前为止,关于修饰后的PCNA作为响应DNA损伤的关键信号整合器的行为,我们已经了解了很多。在人类和酵母中,修饰后的PCNA通过易出错或无错误的途径激活DNA损伤旁路,以防止DNA复制叉的断裂,而DNA复制叉的断裂可能会潜在地诱导双链断裂和随后的染色体重排。然而,这些途径发挥作用的确切机制以及修饰后的PCNA通过何种方式参与这些过程仍然不清楚。因此,对PCNA修饰及其对DNA损伤反应的影响的深入理解可能会为我们提供更多关于人类细胞调节异常重组事件以及癌症发生和发展机制的见解。本综述重点关注PCNA的翻译后修饰及其在介导哺乳动物细胞对不同类型DNA损伤反应中的重要功能。