García E, Orjuela D, Camacho Y, Zúñiga J J, Plasencia J, Vázquez-Ramos J M
Departamento de Bioquimica, Facultad de Quimica, Universidad y Copilco, Mexico D.F.
Plant Mol Biol. 1997 Feb;33(3):445-55. doi: 10.1023/a:1005753711459.
Three DNA polymerase activities, named 1, 2 and 3 were purified from maize embryo axes and were compared in terms of ion requirements, optimal pH, temperature and KCl for activity, response to specific inhibitors and use of templates. All three enzymes require a divalent cation for activity, but main differences were observed in sensitivity to inhibitors and template usage: while DNA polymerases 1 and 2 were inhibited by N-ethyl maleimide and aphidicolin, inhibitors of replicative-type enzymes, DNA polymerase 3 was only marginally or not affected at all. In contrast, DNA polymerase 3 was highly inhibited by very low concentrations of ddTTP, an inhibitor of repair-type enzymes, and a 100-fold higher concentration of the drug was needed to inhibit DNA polymerases 1 and 2. Additionally, DNA polymerases 1 and 2 used equally or more efficiently the synthetic template polydA-oligodT, as compared to activated DNA, while polymerase 3 used it very poorly. Whereas DNA polymerases 1 and 2 shared properties of replicative-type enzymes, DNA polymerase 3 could be a repair-type enzyme. Moreover, a DNA primase activity copurified with the 8000-fold purified DNA polymerase 2, strengthening the suggestion that polymerase 2 is a replicative enzyme, of the alpha-type. This DNA primase activity was also partially characterized. The results are discussed in terms of relevant data about other plant DNA polymerases and primases reported in the literature.
从玉米胚轴中纯化出了三种DNA聚合酶活性,分别命名为1、2和3,并在离子需求、最适pH值、温度、活性所需的KCl、对特定抑制剂的反应以及模板使用等方面进行了比较。所有这三种酶的活性都需要二价阳离子,但在对抑制剂的敏感性和模板使用方面观察到了主要差异:DNA聚合酶1和2受到N-乙基马来酰亚胺和阿非迪霉素的抑制,这两种是复制型酶的抑制剂,而DNA聚合酶3仅受到轻微影响或根本不受影响。相反,DNA聚合酶3受到极低浓度的ddTTP(一种修复型酶的抑制剂)的高度抑制,而抑制DNA聚合酶1和2则需要高100倍浓度的该药物。此外,与活化DNA相比,DNA聚合酶1和2同等或更有效地使用合成模板聚dA-寡聚dT,而聚合酶3对其使用效果很差。鉴于DNA聚合酶1和2具有复制型酶的特性,DNA聚合酶3可能是一种修复型酶。此外,一种DNA引发酶活性与纯化了8000倍的DNA聚合酶2共纯化,这进一步表明聚合酶2是一种α型复制酶。还对这种DNA引发酶活性进行了部分表征。根据文献中报道的关于其他植物DNA聚合酶和引发酶的相关数据对结果进行了讨论。