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苯肼嘧啶对枯草芽孢杆菌脱氧核糖核酸聚合酶III的抑制作用。药物诱导的脱氧核糖核酸-酶复合物的证明。

Inhibition of Bacillus subtilis deoxyribonucleic acid polymerase III by phenylhydrazinopyrimidines. Demonstration of a drug-induced deoxyribonucleic acid-enzyme complex.

作者信息

Clements J E, D'Ambrosio J, Brown N C

出版信息

J Biol Chem. 1975 Jan 25;250(2):522-6.

PMID:803493
Abstract

The interaction of 6-(phenylhydrazino)-pyrimidines and Bacillus subtilis DNA polymerase III was examined in experiments exploiting agarose gel filtration of mixtures of drug, DNA, and purified enzyme. 6-(p-Hdroxyphenylhydrazino)-uracil and 6-(p-hydroxyphenylhydrazino)-isocytosine were used as model inhibitors; both drugs induced the formation of a distinct polymerase-DNA complex. Comples formation required the inhibitory, hydrazino forms of the drugs and a form of DNA suitable as a primer-template for DNA polymerase III. dGTP and dATP, which respectively, competitively antagonize the inhibitory effects of the uracil and isocytosine derivatives, antagonized in an equally specific manner the respective capacities of these compounds to induce complex formation. Experiments exploiting both wild type and drug-resistant, mutant polymerases indicated that drug concentrations required for the half-maximal induction of complex formation were nearly identical with the apparent inhibitor constants (Ki) determined independently by kinetic analysis of enzyme inhibition. These results and those of experiments exploiting defined homopolymer-oligomer combinations as template-primers support a model of inhibitor action in which arylhydrazinopyrimidine forms a reversible, ternary complex with the enzyme and an appropriate timplate pyrimidine residue in an area adjacent to the 3-hydroxyl primer terminus.

摘要

利用药物、DNA和纯化酶混合物的琼脂糖凝胶过滤实验,研究了6-(苯肼基)嘧啶与枯草芽孢杆菌DNA聚合酶III的相互作用。6-(对羟基苯肼基)尿嘧啶和6-(对羟基苯肼基)异胞嘧啶用作模型抑制剂;两种药物均诱导形成一种独特的聚合酶-DNA复合物。复合物的形成需要药物的抑制性肼基形式以及适合作为DNA聚合酶III引物模板的DNA形式。分别竞争性拮抗尿嘧啶和异胞嘧啶衍生物抑制作用的dGTP和dATP,以同样特异性的方式拮抗这些化合物诱导复合物形成的各自能力。利用野生型和耐药突变型聚合酶进行的实验表明,复合物形成半最大诱导所需的药物浓度与通过酶抑制动力学分析独立测定的表观抑制剂常数(Ki)几乎相同。这些结果以及利用确定的同聚物-寡聚物组合作为模板引物的实验结果支持了一种抑制剂作用模型,其中芳基肼基嘧啶与酶以及与3'-羟基引物末端相邻区域的合适模板嘧啶残基形成可逆的三元复合物。

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