Castroviejo M, Gatius M T, Litvak S
Institut de Biochimie Cellulaire et Neurochimie du CNRS, Bordeaux, France.
Plant Mol Biol. 1990 Sep;15(3):383-97. doi: 10.1007/BF00019156.
The study of plant DNA polymerases lags far behind that concerning their animal or yeast counterpart. In this work we describe the first extensive purification to apparent homogeneity, as well as a detailed biochemical and immunological characterization, of a low molecular weight DNA polymerase (DNA polymerase CI) purified from wheat embryos. The monomeric enzyme is a basic protein having a molecular weight of 52 kDa. Polyclonal antibodies raised in rabbits against DNA polymerase CI did not inhibit animal DNA polymerases alpha and beta or wheat DNA polymerase A, whereas wheat DNA polymerases CII and B were much less affected than the CI enzyme. Several properties of enzyme CI were studied. Some known inhibitors of DNA polymerase activity including aphidicolin, phosphonoacetic acid and heparin, did not affect DNA polymerase CI while the activity of this enzyme was strongly inhibited by ddTTP and N-ethylmaleimide. The polyamine spermine decreased markedly the enzyme activity, while spermidine produced a strong stimulation at the same concentrations that spermine inhibited the enzyme. The best template for this enzyme is poly dA-oligo dT, although polymerase CI can recognize significantly some synthetic polyribonucleotide templates (poly rC-oligo dG, poly rA-oligo dT) but only at a given protein/template primer ratio. The enzyme is blocked at the amino terminus, thus preventing the automatic sequencing of the protein. The amino acid analysis showed a striking similarity with the animal low molecular weight DNA polymerase beta. The latter observation, as well as the effect of inhibitors (except N-ethylmaleimide which does not inhibit the animal polymerase) indicate that the DNA polymerase described in this work is a plant DNA polymerase very similar to the low molecular weight animal DNA polymerase beta, an enzyme believed to be involved in nuclear DNA repair.
对植物DNA聚合酶的研究远远落后于对其动物或酵母对应物的研究。在这项工作中,我们描述了首次从小麦胚中纯化出的一种低分子量DNA聚合酶(DNA聚合酶CI),该酶达到了明显的均一性,并进行了详细的生化和免疫学表征。该单体酶是一种碱性蛋白,分子量为52 kDa。用兔制备的针对DNA聚合酶CI的多克隆抗体不抑制动物DNA聚合酶α和β或小麦DNA聚合酶A,而小麦DNA聚合酶CII和B受影响的程度远小于CI酶。我们研究了酶CI的几个特性。一些已知的DNA聚合酶活性抑制剂,包括阿非迪霉素、膦乙酸和肝素,对DNA聚合酶CI没有影响,而该酶的活性受到ddTTP和N-乙基马来酰亚胺的强烈抑制。多胺精胺显著降低了酶的活性,而亚精胺在与精胺抑制酶相同的浓度下产生了强烈的刺激作用。该酶的最佳模板是聚dA-寡聚dT,尽管聚合酶CI在给定的蛋白质/模板引物比例下能显著识别一些合成多聚核糖核苷酸模板(聚rC-寡聚dG、聚rA-寡聚dT)。该酶在氨基末端被封闭,因此无法进行蛋白质的自动测序。氨基酸分析显示与动物低分子量DNA聚合酶β有显著相似性。后一观察结果以及抑制剂的作用(除了不抑制动物聚合酶的N-乙基马来酰亚胺)表明,这项工作中描述的DNA聚合酶是一种与动物低分子量DNA聚合酶β非常相似的植物DNA聚合酶,后者被认为参与核DNA修复。