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首页> 外文期刊>Molecular and Cellular Biology >Mutations in yeast proliferating cell nuclear antigen define distinct sites for interaction with DNA polymerase delta and DNA polymerase epsilon.
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Mutations in yeast proliferating cell nuclear antigen define distinct sites for interaction with DNA polymerase delta and DNA polymerase epsilon.

机译:酵母增殖细胞核抗原中的突变定义了与DNA聚合酶δ和DNA聚合酶ε相互作用的不同位点。

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The importance of the interdomain connector loop and of the carboxy-terminal domain of Saccharomyces cerevisiae proliferating cell nuclear antigen (PCNA) for functional interaction with DNA polymerases delta (Poldelta) and epsilon (Pol epsilon) was investigated by site-directed mutagenesis. Two alleles, pol30-79 (IL126,128AA) in the interdomain connector loop and pol30-90 (PK252,253AA) near the carboxy terminus, caused growth defects and elevated sensitivity to DNA-damaging agents. These two mutants also had elevated rates of spontaneous mutations. The mutator phenotype of pol30-90 was due to partially defective mismatch repair in the mutant. In vitro, the mutant PCNAs showed defects in DNA synthesis. Interestingly, the pol30-79 mutant PCNA (pcna-79) was most defective in replication with Poldelta, whereas pcna-90 was defective in replication with Pol epsilon. Protein-protein interaction studies showed that pcna-79 and pcna-90 failed to interact with Pol delta and Pol epsilon, respectively. In addition, pcna-90 was defective in interaction with the FEN-1 endo-exonuclease (RTH1 product). A loss of interaction between pcna-79 and the smallest subunit of Poldelta, the POL32 gene product, implicates this interaction in the observed defect with the polymerase. Neither PCNA mutant showed a defect in the interaction with replication factor C or in loading by this complex. Processivity of DNA synthesis by the mutant holoenzyme containing pcna-79 was unaffected on poly(dA) x oligo(dT) but was dramatically reduced on a natural template with secondary structure. A stem-loop structure with a 20-bp stem formed a virtually complete block for the holoenzyme containing pcna-79 but posed only a minor pause site for wild-type holoenzyme, indicating a function of the POL32 gene product in allowing replication past structural blocks.
机译:通过定点诱变研究了酿酒酵母增殖细胞核抗原(PCNA)的域间连接器环和羧基末端结构域与DNA聚合酶δ(Poldelta)和ε(Pol epsilon)功能相互作用的重要性。域间连接器环中的两个等位基因pol30-79(IL126,128AA)和羧基末端附近的pol30-90(PK252,253AA)等位基因导致生长缺陷并提高了对DNA破坏剂的敏感性。这两个突变体的自发突变率也很高。 pol30-90的突变体表型是由于突变体中错配修复的部分缺陷所致。在体外,突变的PCNAs在DNA合成中显示出缺陷。有趣的是,pol30-79突变体PCNA(pcna-79)在用Poldelta复制中最有缺陷,而pcna-90在Polε复制中有缺陷。蛋白质-蛋白质相互作用研究表明pcna-79和pcna-90分别无法与Pol delta和Pol epsilon相互作用。另外,pcna-90与FEN-1内切核酸酶(RTH1产品)相互作用时存在缺陷。 pcna-79与Poldelta最小的亚基(POL32基因产物)之间的相互作用丧失,表明这种相互作用与聚合酶在观察到的缺陷中有关。 PCNA突变体均未显示出与复制因子C的相互作用或该复合物的负载缺陷。含有pcna-79的突变全酶的DNA合成能力在poly(dA)x oligo(dT)上不受影响,但在具有二级结构的天然模板上却大大降低。具有20 bp茎的茎环结构形成了包含pcna-79的全酶的几乎完整的嵌段,但仅构成了野生型全酶的一个小停顿位点,表明POL32基因产物在允许通过结构块的复制中起作用。

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