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酵母中的冈崎片段成熟。II. DNA聚合酶δ的聚合酶活性与3'-5'-核酸外切酶活性在形成可连接切口过程中的协同作用。

Okazaki fragment maturation in yeast. II. Cooperation between the polymerase and 3'-5'-exonuclease activities of Pol delta in the creation of a ligatable nick.

作者信息

Jin Yong Hwan, Ayyagari Rao, Resnick Michael A, Gordenin Dmitry A, Burgers Peter M J

机构信息

Laboratory of Molecular Genetics, National Institute for Environmental and Health Sciences, National Institutes of Health, North Carolina 27709, USA.

出版信息

J Biol Chem. 2003 Jan 17;278(3):1626-33. doi: 10.1074/jbc.M209803200. Epub 2002 Nov 6.

DOI:10.1074/jbc.M209803200
PMID:12424237
Abstract

To address the different functions of Pol delta and FEN1 (Rad27) in Okazaki fragment maturation, exonuclease-deficient polymerase Pol delta-01 and Pol delta-5DV (corresponding to alleles pol3-01-(D321A, E323A) and pol3-5DV-(D520V), respectively) were purified and characterized in this process. In the presence of the replication clamp PCNA, both wild-type and exo(-) Pol delta carried out strand displacement synthesis with similar rates; however, initiation of strand displacement synthesis was much more efficient with Pol delta-exo(-). When Pol delta-exo(-) encountered a downstream primer, it paused with 3-5 nucleotides of the primer displaced, whereas the wild type carried out precise gap filling. Consequently, in the absence of FEN1, Pol delta exonuclease activity was essential for closure of simple gaps by DNA ligase. Compared with wild type, Okazaki fragment maturation with Pol delta-exo(-) proceeded with an increased duration of nick translation prior to ligation. Maturation was efficient in the absence of Dna2 and required Dna2 only when FEN1 activity was compromised. In agreement with these results, the proposed generation of double strand breaks in pol3-exo(-) rad27 mutants was suppressed by the overexpression of DNA2. Further genetic studies showed that pol3-exo(-) rad27 double mutants were sensitive to alkylation damage consistent with an in vivo defect in gap filling by exonuclease-deficient Pol delta.

摘要

为了研究DNA聚合酶δ(Pol δ)和翼状核酸内切酶1(FEN1,Rad27)在冈崎片段成熟过程中的不同功能,我们纯化并表征了核酸外切酶缺陷型聚合酶Pol δ-01和Pol δ-5DV(分别对应等位基因pol3-01-(D321A, E323A)和pol3-5DV-(D520V))。在复制钳增殖细胞核抗原(PCNA)存在的情况下,野生型和核酸外切酶缺陷型(exo(-))的Pol δ进行链置换合成的速率相似;然而,Pol δ-exo(-)起始链置换合成的效率更高。当Pol δ-exo(-)遇到下游引物时,它会暂停,引物有3 - 5个核苷酸被置换,而野生型则进行精确的缺口填补。因此,在没有FEN1的情况下,Pol δ的核酸外切酶活性对于DNA连接酶封闭简单缺口至关重要。与野生型相比,Pol δ-exo(-)介导的冈崎片段成熟在连接前的切口平移持续时间增加。在没有Dna2的情况下成熟是有效的,只有当FEN1活性受损时才需要Dna2。与这些结果一致,DNA2的过表达抑制了pol3-exo(-) rad27突变体中双链断裂的产生。进一步的遗传学研究表明,pol3-exo(-) rad27双突变体对烷基化损伤敏感,这与核酸外切酶缺陷型Pol δ在体内缺口填补缺陷一致。

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