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哺乳动物增殖细胞核抗原可刺激两种小麦胚DNA聚合酶的持续合成能力。

Mammalian proliferating cell nuclear antigen stimulates the processivity of two wheat embryo DNA polymerases.

作者信息

Laquel P, Litvak S, Castroviejo M

机构信息

Institut de Biochimie Cellulaire du Centre National de la Recherche Scientifique, Bordeaux, France.

出版信息

Plant Physiol. 1993 May;102(1):107-14. doi: 10.1104/pp.102.1.107.

Abstract

Multiple DNA polymerases have been described in all organisms studied to date. Their specific functions are not easy to determine, except when powerful genetic and/or biochemical tools are available. However, the processivity of a DNA polymerase could reflect the physiological role of the enzyme. In this study, analogies between plant and animal DNA polymerases have been investigated by analyzing the size of the products synthesized by wheat DNA polymerases A, B, CI, and CII as a measure of their processivity. Thus, incubations have been carried out with poly(dA)-oligo(dT) as a template-primer under varying assay conditions. In the presence of MgCl2, DNA polymerase A was highly processive, whereas DNA polymerases B, CI, and CII synthesized much shorter products. With MnCl2 instead of MgCl2, DNA polymerase A was highly processive, DNA polymerases B and CII were moderately processive, and DNA polymerase CI remained strictly distributive. The effect of calf thymus proliferating cell nuclear antigen (PCNA) on wheat polymerases was studied as described for animal DNA polymerases. The high processivity of DNA polymerase A was PCNA independent, whereas both enzyme activity and processivity of wheat DNA polymerases B and CII were significantly stimulated by PCNA. On the other hand, DNA polymerase CI was not stimulated by PCNA and, like animal DNA polymerase beta, was distributive in all cases. From these results, we propose that wheat DNA polymerase A could correspond to a DNA polymerase alpha, DNA polymerases B and CII could correspond to the delta-like enzyme, and DNA polymerase CI could correspond to DNA polymerase beta.

摘要

迄今为止,在所有已研究的生物体中均已发现多种DNA聚合酶。除了使用强大的遗传学和/或生物化学工具外,很难确定它们的具体功能。然而,DNA聚合酶的持续合成能力可能反映了该酶的生理作用。在本研究中,通过分析小麦DNA聚合酶A、B、CI和CII合成产物的大小作为其持续合成能力的指标,对植物和动物DNA聚合酶之间的相似性进行了研究。因此,在不同的测定条件下,以聚(dA)-寡聚(dT)作为模板引物进行孵育。在MgCl2存在的情况下,DNA聚合酶A具有高度的持续合成能力,而DNA聚合酶B、CI和CII合成的产物则短得多。用MnCl2代替MgCl2时,DNA聚合酶A具有高度的持续合成能力,DNA聚合酶B和CII具有中等程度的持续合成能力,而DNA聚合酶CI则严格表现为分布性。按照研究动物DNA聚合酶的方法,研究了小牛胸腺增殖细胞核抗原(PCNA)对小麦聚合酶的影响。DNA聚合酶A的高持续合成能力不依赖于PCNA,而小麦DNA聚合酶B和CII的酶活性和持续合成能力均受到PCNA 的显著刺激。另一方面,DNA聚合酶CI不受PCNA的刺激,并且与动物DNA聚合酶β一样,在所有情况下均表现为分布性。根据这些结果,我们推测小麦DNA聚合酶A可能对应于DNA聚合酶α,DNA聚合酶B和CII可能对应于δ样酶,而DNA聚合酶CI可能对应于DNA聚合酶β。

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本文引用的文献

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Selective affinity chromatography of DNA polymerases with associated 3' to 5' exonuclease activities.
Anal Biochem. 1984 May 1;138(2):291-7. doi: 10.1016/0003-2697(84)90810-8.
4
Progress toward molecular biology of DNA polymerase beta.
Biochim Biophys Acta. 1988 Feb 28;949(2):149-57. doi: 10.1016/0167-4781(88)90078-4.
10
Revised nomenclature for eukaryotic DNA polymerases.真核生物DNA聚合酶的修订命名法。
Eur J Biochem. 1990 Aug 17;191(3):617-8. doi: 10.1111/j.1432-1033.1990.tb19165.x.

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