Arroyo M P, Downey K M, So A G, Wang T S
Department of Pathology, Stanford University School of Medicine, Stanford, California 94305-5324, USA.
J Biol Chem. 1996 Jul 5;271(27):15971-80. doi: 10.1074/jbc.271.27.15971.
We introduced nine site-directed mutations into seven conserved fission yeast proliferative cell nuclear antigen (PCNA) residues, Leu2, Asp63, Arg64, Gly69, Gln201, Glu259, and Glu260, either as single or as double mutants. Both the recombinant wild type and mutant PCNAs were able to form homotrimers in solution and to sustain growth of a null pcna strain (Deltapcna). Wild type Schizosaccharomyces pombe PCNA and PCNA proteins with mutations in Asp63, Gln201, Glu259, or Glu260 to Ala were able to stimulate DNA synthetic activity and to enhance the processivity of calf thymus DNA polymerase delta holoenzyme similar to calf thymus PCNA. Mutations of Leu2 to Val or Arg64 to Ala, either singly or as a double mutant, yielded PCNA mutant proteins that had reduced capacity in enhancing the processivity of DNA polymerase delta but showed no deficiency in stimulation of the ATPase activity of replication factor C. S. pombe Deltapcna strains sustained by these two mutant-pcna alleles had moderate defects in growth and displayed elongated phenotypes. These cells, however, were not sensitive to UV irradiation. Together, these in vitro and in vivo studies suggest that the side chains of Leu2 and Arg64 in one face of the PCNA trimer ring structure are two of the several sites involved in tethering DNA polymerase delta for processive DNA synthesis during DNA replication.
我们在裂殖酵母增殖细胞核抗原(PCNA)的7个保守残基Leu2、Asp63、Arg64、Gly69、Gln201、Glu259和Glu260处引入了9个定点突变,这些突变既有单突变体,也有双突变体。重组野生型和突变型PCNA均能在溶液中形成同三聚体,并能维持pcna基因缺失菌株(Deltapcna)的生长。野生型粟酒裂殖酵母PCNA以及Asp63、Gln201、Glu259或Glu260突变为丙氨酸的PCNA蛋白能够刺激DNA合成活性,并增强小牛胸腺DNA聚合酶δ全酶的持续合成能力,与小牛胸腺PCNA相似。Leu2突变为Val或Arg64突变为Ala,无论是单突变还是双突变,所产生的PCNA突变蛋白增强DNA聚合酶δ持续合成能力的能力降低,但在刺激复制因子C的ATP酶活性方面未表现出缺陷。由这两个突变pcna等位基因维持的粟酒裂殖酵母Deltapcna菌株在生长方面有中度缺陷,并表现出细胞伸长的表型。然而,这些细胞对紫外线照射不敏感。总之,这些体外和体内研究表明,PCNA三聚体环结构一侧的Leu2和Arg64侧链是DNA复制过程中与持续DNA合成相关的几个位点中的两个,它们参与束缚DNA聚合酶δ。