Slade Dea
Department of Biochemistry, Max F. Perutz Laboratories, University of Vienna, Vienna Biocenter (VBC), 1030 Vienna, Austria.
Genes (Basel). 2018 Aug 17;9(8):416. doi: 10.3390/genes9080416.
DNA replication and repair are essential cellular processes that ensure genome duplication and safeguard the genome from deleterious mutations. Both processes utilize an abundance of enzymatic functions that need to be tightly regulated to ensure dynamic exchange of DNA replication and repair factors. Proliferating cell nuclear antigen (PCNA) is the major coordinator of faithful and processive replication and DNA repair at replication forks. Post-translational modifications of PCNA, ubiquitination and acetylation in particular, regulate the dynamics of PCNA-protein interactions. Proliferating cell nuclear antigen (PCNA) monoubiquitination elicits 'polymerase switching', whereby stalled replicative polymerase is replaced with a specialized polymerase, while PCNA acetylation may reduce the processivity of replicative polymerases to promote homologous recombination-dependent repair. While regulatory functions of PCNA ubiquitination and acetylation have been well established, the regulation of PCNA-binding proteins remains underexplored. Considering the vast number of PCNA-binding proteins, many of which have similar PCNA binding affinities, the question arises as to the regulation of the strength and sequence of their binding to PCNA. Here I provide an overview of post-translational modifications on both PCNA and PCNA-interacting proteins and discuss their relevance for the regulation of the dynamic processes of DNA replication and repair.
DNA复制和修复是细胞的基本过程,可确保基因组复制并保护基因组免受有害突变的影响。这两个过程都利用了大量的酶功能,这些功能需要严格调控,以确保DNA复制和修复因子的动态交换。增殖细胞核抗原(PCNA)是复制叉处忠实且持续的复制和DNA修复的主要协调者。PCNA的翻译后修饰,特别是泛素化和乙酰化,调节PCNA-蛋白质相互作用的动态过程。增殖细胞核抗原(PCNA)单泛素化引发“聚合酶切换”,即停滞的复制性聚合酶被一种特殊的聚合酶取代,而PCNA乙酰化可能会降低复制性聚合酶的持续合成能力,以促进同源重组依赖性修复。虽然PCNA泛素化和乙酰化的调节功能已得到充分证实,但对PCNA结合蛋白的调节仍未得到充分研究。考虑到大量的PCNA结合蛋白,其中许多具有相似的PCNA结合亲和力,因此出现了关于它们与PCNA结合强度和顺序的调节问题。在此,我概述了PCNA及其相互作用蛋白的翻译后修饰,并讨论了它们与DNA复制和修复动态过程调节的相关性。