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大肠杆菌DNA聚合酶I与核苷酸的相互作用。单链多核苷酸同聚物的拮抗作用。

Interaction of DNA polymerase I of Escherichia coli with nucleotides. Antagonistic effects of single-stranded polynucleotide homopolymers.

作者信息

Muise O, Holler E

出版信息

Biochemistry. 1985 Jul 2;24(14):3618-22. doi: 10.1021/bi00335a033.

Abstract

Binding of deoxyribonucleoside 5'-triphosphates to DNA polymerase I of Escherichia coli was measured by using a microscale nonequilibrium dialysis method. It allowed rapid and economic measurement of dissociation constants, with negligible interfering side reactions. A stoichiometry of 1 mol of nucleoside 5'-triphosphate/mol of DNA polymerase was measured, and the occurrence of a single binding site was established, for which the nucleotides competed in the binary complex with the polymerase. Binding affinities decreased in the order dGTP greater than or equal to dATP greater than dCTP congruent to dTTP. These results are in agreement with previous findings [Englund, P. T., Huberman, J. A., Jovin, T. M., & Kornberg, A. (1969) J. Biol. Chem. 244, 3038-3044] except that, in a few cases, values of dissociation constants were smaller by factors of 2-3. The cations Mg2+ and Mn2+, as well as spermine, slightly enhanced complex stability at low levels and decreased it at high concentrations, while NaCl and Hg2+ had only destabilizing effects. Recognition between nucleoside 5'-triphosphates and nucleotide templates was studied by titration of the polymerase-[3H]dGTP complex with polynucleotide homopolymers. Complementary poly(dC) did not affect binding of dGTP, and non-complementary templates caused rejection of the nucleotide. Rejection of dGTP followed a saturation dependence with an equivalence of 110 +/- 10 monomer units of polynucleotides bound per molecule of DNA polymerase. The results favor a model by which recognition arises chiefly from the stereogeometrical fit of complementary template and nucleoside 5'-triphosphate into a rigid binding site.

摘要

采用微量非平衡透析法测定脱氧核糖核苷5'-三磷酸与大肠杆菌DNA聚合酶I的结合。该方法能快速且经济地测定解离常数,干扰副反应可忽略不计。测得核苷5'-三磷酸与DNA聚合酶的化学计量比为1摩尔/摩尔,确定存在单一结合位点,核苷酸在与聚合酶形成的二元复合物中相互竞争。结合亲和力按dGTP≥dATP>dCTP≡dTTP的顺序降低。这些结果与先前的发现一致[Englund, P. T., Huberman, J. A., Jovin, T. M., & Kornberg, A. (1969) J. Biol. Chem. 244, 3038 - 3044],只是在少数情况下,解离常数的值小2 - 3倍。阳离子Mg2 +和Mn2 +以及精胺在低浓度时略微增强复合物稳定性,在高浓度时降低稳定性,而NaCl和Hg2 +仅有去稳定作用。通过用多核苷酸均聚物滴定聚合酶 - [3H]dGTP复合物研究了核苷5'-三磷酸与核苷酸模板之间的识别。互补的聚(dC)不影响dGTP的结合,非互补模板导致核苷酸被排斥。dGTP的排斥呈现饱和依赖性,每分子DNA聚合酶结合的多核苷酸单体单元当量为110±10。结果支持一种模型,即识别主要源于互补模板和核苷5'-三磷酸立体几何匹配进入刚性结合位点。

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