Reha-Krantz L J
Department of Genetics, University of Alberta, Edmonton, Canada.
J Mol Biol. 1988 Aug 20;202(4):711-24. doi: 10.1016/0022-2836(88)90552-9.
Previous studies on the selection of bacteriophage T4 mutator mutants have been extended and a method to regulate the mutator activity of DNA polymerase mutator strains has been developed. The nucleotide changes of 17 bacteriophage T4 DNA polymerase mutations that confer a mutator phenotype and the nucleotide substitutions of several other T4 DNA polymerase mutations have been determined. The most striking observation is that the distribution of DNA polymerase mutator mutations is not random; almost all mutator mutations are located in the N-terminal half of the DNA polymerase. It has been shown that the T4 DNA polymerase shares several regions of homology at the protein sequence level with DNA polymerases of herpes, adeno and pox viruses. From studies of bacteriophage T4 and herpes DNA polymerase mutants, and from analyses of similar protein sequences from several organisms, we conclude that DNA polymerase synthetic activities are located in the C-terminal half of the DNA polymerase and that exonucleolytic activity is located nearer the N terminus.
以往关于噬菌体T4突变体选择的研究得到了扩展,并开发了一种调节DNA聚合酶突变体菌株突变活性的方法。已经确定了赋予突变体表型的17种噬菌体T4 DNA聚合酶突变的核苷酸变化以及其他几种T4 DNA聚合酶突变的核苷酸取代。最引人注目的发现是DNA聚合酶突变的分布并非随机;几乎所有的突变都位于DNA聚合酶的N端一半区域。已经表明,T4 DNA聚合酶在蛋白质序列水平上与疱疹病毒、腺病毒和痘病毒的DNA聚合酶有几个同源区域。通过对噬菌体T4和疱疹DNA聚合酶突变体的研究,以及对几种生物体相似蛋白质序列的分析,我们得出结论,DNA聚合酶的合成活性位于DNA聚合酶的C端一半区域,而核酸外切酶活性则更靠近N端。