Takeuchi Ryo, Kimura Seisuke, Saotome Ai, Sakaguchi Kengo
Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda-shi, Chiba-ken, 278-8510, Japan.
Plant Mol Biol. 2007 Jul;64(5):601-11. doi: 10.1007/s11103-007-9179-2. Epub 2007 May 24.
Plastids are organelles unique to plant cells and are responsible for photosynthesis and other metabolic functions. Despite their important cellular roles, relatively little is known about the mechanism of plastidial DNA replication and repair. Recently, we identified a novel DNA polymerase in Oryza Sativa L. (OsPOLP1, formerly termed OsPolI-like) that is homologous to prokaryotic DNA polymerase Is (PolIs), and suggested that this polymerase might be involved in plastidial DNA replication and repair. Here, we propose to rename the plant PolI homologs as DNA polymerase pi (POLP), and investigate the biochemical properties of full-length OsPOLP1. The purified OsPOLP1 elongated both DNA and RNA primer hybridized to a DNA template, and possessed a 3' exonuclease activity. Moreover, OsPOLP1 displayed high processivity and fidelity, indicating that this polymerase has the biochemical characteristics appropriate for DNA replication. We found that POLPs have two extra sequences in the polymerase domain that are absent in prokaryotic PolIs. Deletion of either insert from OsPOLP1 caused a decrease in DNA synthetic activity, processivity, and DNA binding activity. In addition, OsPOLP1 efficiently catalyzed strand displacement on nicked DNA with a 5'-deoxyribose phosphate, suggesting that this enzyme might be involved in a repair pathway similar to long-patch base excision repair. These results provide insights into the possible role of POLPs in plastidial DNA replication and repair.
质体是植物细胞特有的细胞器,负责光合作用和其他代谢功能。尽管它们在细胞中发挥着重要作用,但关于质体DNA复制和修复的机制却知之甚少。最近,我们在水稻中鉴定出一种新型DNA聚合酶(OsPOLP1,以前称为类OsPolI),它与原核DNA聚合酶I(PolIs)同源,并表明这种聚合酶可能参与质体DNA的复制和修复。在这里,我们建议将植物PolI同源物重新命名为DNA聚合酶pi(POLP),并研究全长OsPOLP1的生化特性。纯化的OsPOLP1能够延长与DNA模板杂交的DNA和RNA引物,并具有3'核酸外切酶活性。此外,OsPOLP1表现出高持续性和保真度,表明这种聚合酶具有适合DNA复制的生化特性。我们发现POLP在聚合酶结构域中有两个原核PolI中不存在的额外序列。从OsPOLP1中删除任何一个插入序列都会导致DNA合成活性、持续性和DNA结合活性降低。此外,OsPOLP1能够有效地催化带5'-脱氧核糖磷酸的切口DNA上的链置换,这表明这种酶可能参与了一种类似于长片段碱基切除修复的修复途径。这些结果为POLP在质体DNA复制和修复中的可能作用提供了见解。