Khan N N, Wright G E, Brown N C
Department of Pharmacology, University of Massachusetts Medical School, Worcester 01655.
Nucleic Acids Res. 1991 Apr 11;19(7):1627-32. doi: 10.1093/nar/19.7.1627.
Calf thymus DNA polymerase alpha (pol alpha) and bacteriophage T4 DNA polymerase (pol T4) were exploited as model enzymes to investigate the molecular mechanism of inhibitory action of N2-(p-n-butylphenyl)dGTP (BuPdGTP) and 2-(p-n-butyl-anilino)dATP (BuAdATP) on the BuPdNTP-susceptible alpha polymerase family. Kinetic analysis of inhibition of pol alpha with mixtures of complementary and noncomplementary template:primers indicated that both nucleotides induced the formation of a polymerase: inhibitor:primer-template complex. Primer extension experiments using the guanine form as the model analog indicated that pol alpha cannot utilize these nucleotides to extend primer termini. In contrast, pol T4 polymerized BuPdGTP, indicating that resistance to polymerization is not a common feature of the inhibitor mechanism among the broad membership of the alpha polymerase family.
利用小牛胸腺DNA聚合酶α(polα)和噬菌体T4 DNA聚合酶(pol T4)作为模型酶,研究N2-(对正丁基苯基)dGTP(BuPdGTP)和2-(对正丁基苯胺基)dATP(BuAdATP)对BuPdNTP敏感的α聚合酶家族抑制作用的分子机制。用互补和非互补模板:引物混合物对polα抑制的动力学分析表明,两种核苷酸均诱导形成聚合酶:抑制剂:引物-模板复合物。以鸟嘌呤形式作为模型类似物的引物延伸实验表明,polα不能利用这些核苷酸延伸引物末端。相比之下,pol T4可聚合BuPdGTP,这表明对聚合的抗性不是α聚合酶家族众多成员中抑制剂机制的共同特征。