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Three Proliferating Cell Nuclear Antigen-Like Proteins Found in the Hyperthermophilic Archaeon Aeropyrum pernix: Interactions with the Two DNA Polymerases

机译:在超嗜热古细菌气生菌多年生菌中发现的三种增殖细胞核抗原样蛋白:与两种DNA聚合酶的相互作用。

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摘要

Proliferating cell nuclear antigen (PCNA) is an essential component in the eukaryotic DNA replication machinery, in which it works for tethering DNA polymerases on the DNA template to accomplish processive DNA synthesis. The PCNA also interacts with many other proteins in important cellular processes, including cell cycle control, DNA repair, and an apoptotic pathway in the domain Eucarya. We identified three genes encoding PCNA-like sequences in the genome of Aeropyrum pernix, a crenarchaeal archaeon. We cloned and expressed these genes in Escherichia coli and analyzed the gene products. All three PCNA homologs stimulated the primer extension activities of the two DNA polymerases, polymerase I (Pol I) and Pol II, identified in A. pernix to various extents, among which A. pernix PCNA 3 (ApePCNA3) provided a most remarkable effect on both Pol I and Pol II. The three proteins were confirmed to exist in the A. pernix cells. These results suggest that the three PCNAs work as the processivity factor of DNA polymerases in A. pernix cells under different conditions. In Eucarya, three checkpoint proteins, Hus1, Rad1, and Rad9, have been proposed to form a PCNA-like ring structure and may work as a sliding clamp for the translesion DNA polymerases. Therefore, it is very interesting that three active PCNAs were found in one archaeal cell. Further analyses are necessary to determine whether each PCNA has specific roles, and moreover, how they reveal different functions in the cells.
机译:增殖细胞核抗原(PCNA)是真核DNA复制机制中的重要组成部分,在其中它用于束缚DNA模板上的DNA聚合酶以完成过程性DNA合成。 PCNA在重要的细胞过程中还与许多其他蛋白质相互作用,包括细胞周期控制,DNA修复和Eucarya域中的凋亡途径。我们确定了三个编码烟灰霉古菌气单胞菌基因组中的PCNA样序列的基因。我们在大肠杆菌中克隆并表达了这些基因,并分析了基因产物。这三种PCNA同源物均在不同程度上刺激了两种在A. pernix中鉴定的DNA聚合酶I(Pol I)和Pol II的引物延伸活性,其中A. pernix PCNA 3(ApePCNA3)对A. pernix具有最显着的作用。 Pol I和Pol II。证实这三种蛋白质存在于A. pernix细胞中。这些结果表明,在不同条件下,三种PCNA都可以作为A. pernix细胞中DNA聚合酶的合成因子。在Eucarya中,已经提出了三种检查点蛋白Hus1,Rad1和Rad9形成PCNA样的环结构,并且可以用作跨病变DNA聚合酶的滑动夹具。因此,非常有趣的是在一个古细菌细胞中发现了三个活跃的PCNA。有必要进行进一步的分析以确定每个PCNA是否具有特定作用,以及它们如何揭示细胞中的不同功能。

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