Nevinskiĭ G A, Potapova I A, Tarusova N B, Khalabuda O V, Khomov V V
Mol Biol (Mosk). 1990 Jan-Feb;24(1):104-16.
AMP and NaF each taken separately were shown to activate DNA polymerization catalyzed by Klenow fragment of DNA polymerase I by means of interaction of AMP or NaF with 3'----5'-exonuclease center of the enzyme. In the presence of NaF which is a selective inhibitor of 3'----5'-exonuclease center, AMP is an inhibitor of polymerization competitive with respect to dATP. Ki values and the pattern of inhibition with respect to dATP were determined for AMP, ADP, ATP, carboxymethylphosphonyl-5'-AMP, Pi, PPi, PPPi, methylenediphosphonic acid and its ethylated esters, phosphonoformic acid, phosphonoacetic acid and its ethylated esters as well as for some bicarbonic acids in the reactions of DNA polymerization catalyzed by Klenow fragment of DNA polymerase I (in the presence of NaF) and DNA polymerase alpha from human placenta in the presence of poly(dT) template and r(pA)10 primer. All nucleotides and their analogs were found to be capable of competing with dATP for the active center of the enzyme. Most of the analogs of PPi and phosphonoacetic acid are inhibitors of Klenow fragment competitive with respect to dATP. Nowever these analogs display a mixed-type inhibition in the case of human DNA polymerase alpha. We postulated a similar mechanism of interaction for dNTP with both DNA-polymerases. It is suggested that each phosphate group of PPi makes equal contribution to the interaction with DNA polymerases and that the distance between the phosphate groups is important for this interaction. beta-phosphate of NTP or dNTP is suggested to make negligible contribution to the efficiency of the formation of enzyme complexes with dNTP. beta-phosphate is likely to be an essential point of PPi interaction with the active center of proteins during the cleavage of the alpha-beta-phosphodiester bond of dNTP in the reaction of DNA polymerization.
单独使用的AMP和NaF通过AMP或NaF与该酶的3'----5'-外切核酸酶中心的相互作用,被证明可激活由DNA聚合酶I的Klenow片段催化的DNA聚合反应。在作为3'----5'-外切核酸酶中心选择性抑制剂的NaF存在下,AMP是相对于dATP具有竞争性的聚合反应抑制剂。测定了AMP、ADP、ATP、羧甲基膦酰基-5'-AMP、Pi、PPi、PPPi、亚甲基二膦酸及其乙酯、膦甲酸、膦乙酸及其乙酯以及一些碳酸氢酸在由DNA聚合酶I的Klenow片段催化的DNA聚合反应(在NaF存在下)和人胎盘DNA聚合酶α在聚(dT)模板和r(pA)10引物存在下的反应中的Ki值和对dATP的抑制模式。发现所有核苷酸及其类似物都能够与dATP竞争酶活性中心。PPi和膦乙酸的大多数类似物是相对于dATP具有竞争性的Klenow片段抑制剂。然而,这些类似物在人DNA聚合酶α的情况下表现出混合型抑制。我们推测dNTP与两种DNA聚合酶的相互作用机制相似。有人提出PPi的每个磷酸基团对与DNA聚合酶的相互作用贡献相等,并且磷酸基团之间的距离对这种相互作用很重要。有人提出NTP或dNTP的β-磷酸对与dNTP形成酶复合物的效率贡献可忽略不计。在DNA聚合反应中dNTP的α-β-磷酸二酯键断裂期间,β-磷酸可能是PPi与蛋白质活性中心相互作用的关键点。