Department of Plant Biotechnology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, Krakow, Poland.
Ann Bot. 2011 May;107(7):1127-40. doi: 10.1093/aob/mcq243. Epub 2010 Dec 17.
PCNA (proliferating cell nuclear antigen) has been found in the nuclei of yeast, plant and animal cells that undergo cell division, suggesting a function in cell cycle regulation and/or DNA replication. It subsequently became clear that PCNA also played a role in other processes involving the cell genome.
This review discusses eukaryotic PCNA, with an emphasis on plant PCNA, in terms of the protein structure and its biochemical properties as well as gene structure, organization, expression and function. PCNA exerts a tripartite function by operating as (1) a sliding clamp during DNA synthesis, (2) a polymerase switch factor and (3) a recruitment factor. Most of its functions are mediated by its interactions with various proteins involved in DNA synthesis, repair and recombination as well as in regulation of the cell cycle and chromatid cohesion. Moreover, post-translational modifications of PCNA play a key role in regulation of its functions. Finally, a phylogenetic comparison of PCNA genes suggests that the multi-functionality observed in most species is a product of evolution.
Most plant PCNAs exhibit features similar to those found for PCNAs of other eukaryotes. Similarities include: (1) a trimeric ring structure of the PCNA sliding clamp, (2) the involvement of PCNA in DNA replication and repair, (3) the ability to stimulate the activity of DNA polymerase δ and (4) the ability to interact with p21, a regulator of the cell cycle. However, many plant genomes seem to contain the second, probably functional, copy of the PCNA gene, in contrast to PCNA pseudogenes that are found in mammalian genomes.
PCNA(增殖细胞核抗原)已在经历细胞分裂的酵母、植物和动物细胞的核中发现,这表明它在细胞周期调控和/或 DNA 复制中具有功能。随后,人们清楚地认识到 PCNA 还在涉及细胞基因组的其他过程中发挥作用。
本文从蛋白结构及其生化特性以及基因结构、组织、表达和功能等方面讨论了真核 PCNA,重点是植物 PCNA。PCNA 通过以下三种方式发挥三重功能:(1)在 DNA 合成过程中充当滑动夹;(2)作为聚合酶开关因子;(3)作为募集因子。它的大多数功能都是通过与涉及 DNA 合成、修复和重组以及细胞周期调控和染色单体黏合的各种蛋白相互作用来介导的。此外,PCNA 的翻译后修饰在其功能调控中起着关键作用。最后,对 PCNA 基因的系统发育比较表明,在大多数物种中观察到的多功能性是进化的产物。
大多数植物 PCNAs 表现出与其他真核生物 PCNAs 相似的特征。相似之处包括:(1)PCNA 滑动夹的三聚体环结构;(2)PCNA 参与 DNA 复制和修复;(3)能够刺激 DNA 聚合酶 δ 的活性;(4)能够与细胞周期调节剂 p21 相互作用。然而,许多植物基因组似乎包含 PCNA 基因的第二个,可能是功能性,拷贝,而不是在哺乳动物基因组中发现的 PCNA 假基因。