Bermudez Vladimir P, MacNeill Stuart A, Tappin Inger, Hurwitz Jerard
Memorial Sloan-Kettering Cancer Center, Program of Molecular Biology, New York, New York 10021, USA.
J Biol Chem. 2002 Sep 27;277(39):36853-62. doi: 10.1074/jbc.M202897200. Epub 2002 Jul 17.
Schizosaccharomyces pombe DNA polymerase (pol) delta contains four subunits, pol 3, Cdc1, Cdc27, and Cdm1. In this report, we examined the role of Cdc27 on the structure and activity of pol delta. We show that the four-subunit complex is monomeric in structure, in contrast to the previous report that it was a dimer (Zuo, S., Bermudez, V., Zhang, G., Kelman, Z., and Hurwitz, J. (2000) J. Biol. Chem. 275, 5153-5162). This discrepancy between the earlier and recent observations was traced to the marked asymmetric shape of Cdc27. Cdc27 contains two critical domains that govern its role in activating pol delta. The N-terminal region (amino acids (aa) 1-160) binds to Cdc1 and its extreme C-terminal end (aa 362-369) interacts with proliferating cell nuclear antigen (PCNA). Mutants of S. pombe pol delta, containing truncated Cdc27 derivatives deficient in binding to PCNA, supported DNA replication less processively than the wild-type complex. Fusion of a minimal PCNA-binding motif (aa 352-372) to C-terminally truncated Cdc27 derivatives restored processive DNA synthesis in vitro. In vivo, the introduction of these fused Cdc27 derivatives into cdc27Delta cells conferred viability. These data support the model in which Cdc27 plays an essential role in DNA replication by recruiting PCNA to the pol delta holoenzyme.
粟酒裂殖酵母DNA聚合酶(pol)δ包含四个亚基,即pol 3、Cdc1、Cdc27和Cdm1。在本报告中,我们研究了Cdc27对pol δ的结构和活性的作用。我们发现,与之前报道该复合物为二聚体(Zuo, S., Bermudez, V., Zhang, G., Kelman, Z., and Hurwitz, J. (2000) J. Biol. Chem. 275, 5153 - 5162)不同,该四亚基复合物在结构上是单体。早期和近期观察结果之间的这种差异可追溯到Cdc27明显的不对称形状。Cdc27包含两个关键结构域,它们决定了其在激活pol δ中的作用。N端区域(氨基酸(aa)1 - 160)与Cdc1结合,其极端C端(aa 362 - 369)与增殖细胞核抗原(PCNA)相互作用。含有截短的Cdc27衍生物且与PCNA结合缺陷的粟酒裂殖酵母pol δ突变体,其支持DNA复制的持续性低于野生型复合物。将最小的PCNA结合基序(aa 352 - 372)与C端截短的Cdc27衍生物融合,可在体外恢复持续性DNA合成。在体内,将这些融合的Cdc27衍生物导入cdc27Δ细胞可赋予细胞活力。这些数据支持了这样一个模型,即Cdc27通过将PCNA招募到pol δ全酶中,在DNA复制中发挥重要作用。