Khan N N, Wright G E, Dudycz L W, Brown N C
Nucleic Acids Res. 1984 Apr 25;12(8):3695-706. doi: 10.1093/nar/12.8.3695.
BuPdGTP , the 2'-deoxyribonucleoside 5'-triphosphate of the DNA polymerase alpha (pol alpha)-specific inhibitor, N2-(p-n- butylphenyl )guanine, was examined with respect to its mechanism and its capacity to inhibit the mammalian DNA polymerases, pol alpha, pol beta, and pol gamma. BuP dGTP was specifically inhibitory for pol alpha, with no discernible activity on pol beta and pol gamma. The potency of BuP dGTP is unprecedented, with an apparent Ki less than 10 nanomolar. The unusual potency of the BuP dGTP is derived primarily from the 5' alpha and beta phosphoryl moieties, whose binding to enzyme complements that of the base-linked butylphenyl substituent. BuP dGTP is competitive with dGTP and apparently not subject to polymerization. Experiments employing BuP dGTP in the presence of a non-complementary template suggest that the core polymerase or an associated coprotein contains dNTP binding sites which recognize specific nucleic acid bases. The partial sensitivity of selected, non-mammalian DNA polymerases suggests that modification of the N2 substituent of dGTP will be a useful route to the design of novel, polymerase-specific affinity-probes.
DNA聚合酶α(polα)特异性抑制剂N2-(对正丁基苯基)鸟嘌呤的2'-脱氧核糖核苷5'-三磷酸(BuPdGTP),就其抑制哺乳动物DNA聚合酶polα、polβ和polγ的机制及能力进行了研究。BuPdGTP对polα具有特异性抑制作用,对polβ和polγ无明显活性。BuPdGTP的效力前所未有的高,其表观解离常数(Ki)小于10纳摩尔。BuPdGTP这种异常高的效力主要源于5'α和β磷酸基团,它们与酶的结合与碱基连接的丁基苯基取代基互补。BuPdGTP与dGTP竞争,且显然不会发生聚合。在非互补模板存在的情况下使用BuPdGTP进行的实验表明,核心聚合酶或相关的辅助蛋白含有识别特定核酸碱基的dNTP结合位点。所选非哺乳动物DNA聚合酶的部分敏感性表明,修饰dGTP的N2取代基将是设计新型聚合酶特异性亲和探针的有用途径。