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Mechanism of action of nalidixic acid: Purification of Escherichia coli nalA gene product and its relationship to DNA gyrase and a novel nicking-closing enzyme

机译:萘啶酸的作用机理:大肠杆菌nalA基因产物的纯化及其与DNA促旋酶和一种新型的切口封闭酶的关系

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摘要

A target protein for nalidixic and oxolinic acids in Escherichia coli, the nalA gene product (Pnal), was purified to homogeneity as judged by gel electrophoresis, using an in vitro complementation assay. It is a dimer of identical 110,000-dalton subunits. A polypeptide of this molecular weight is uniquely induced by a λ nalA transducing phage, thereby showing that the purified Pnal is a product of the nalA gene. Nalidixic and oxolinic acids inhibit DNA gyrase activity and induce formation of a relaxation complex analogue. Treatment of the complex with sodium dodecyl sulfate causes a doublestrand break in the DNA substrate and the resulting linear molecule seems covalently bound to protein. Complex formation, unlike the introduction of supertwists, does not require ATP or relaxed circular DNA and is insensitive to novobiocin. DNA gyrase from a strain with a nalA mutation conferring drug resistance (nalAr) is 1/100 as sensitive to oxolinic and nalidixic acids with respect to inhibition of supertwisting and induction of the pre-linearization complex. Addition of Pnal restores drug sensitivity and stimulates DNA gyrase activity. DNA gyrase preparations and Pnal catalyze a third reaction sensitive to nalidixic and oxolinic acids, the ATP-independent relaxation of supertwister DNA. Relaxation by gyrase from nalAr cells is drug resistant. The nicking-closing activity is distinct from E. coli ω protein in several properties, including the ability to relax positively supertwisted DNA. We postulate that the nalA gene product occurs in two molecular forms, as Pnal and as a gyrase component. Both forms catalyze nicking-closing, and inhibition of this activity by nalidixic and oxolinic acids may account for the inhibition of DNA synthesis by these drugs.
机译:如通过凝胶电泳所判断的那样,使用体外互补测定法将大肠杆菌中萘啶酸和恶唑酸的靶蛋白nalA基因产物(Pnal)纯化至同质。它是相同的110,000道尔顿亚基的二聚体。这种分子量的多肽被λnalA转导噬菌体独特地诱导,从而表明纯化的Pnal是nalA基因的产物。萘啶酸和恶唑酸抑制DNA促旋酶活性并诱导松弛复合物类似物的形成。用十二烷基硫酸钠处理该复合物会导致DNA底物的双链断裂,并且所得的线性分子似乎与蛋白质共价结合。与引入超捻不同,复合物的形成不需要ATP或松弛的环状DNA,并且对新霉素不敏感。就抑制超扭曲和诱导线性前复合物的诱导而言,具有nalA突变并赋予抗药性(nalAr)的菌株的DNA促旋酶对草酸和萘啶酸的敏感性为1/100。添加Pnal可恢复药物敏感性,并刺激DNA促旋酶活性。 DNA促旋酶制剂和Pnal催化对萘啶酸和恶唑酸敏感的第三种反应,即超螺旋DNA的ATP依赖性松弛。从nalAr细胞中回旋酶的松弛是抗药性的。切刻关闭活性在许多特性上与大肠杆菌ω蛋白不同,包括松弛正向超扭曲DNA的能力。我们假设nalA基因产物以两种分子形式出现,即Pnal和回旋酶成分。两种形式均能催化切口闭合,萘啶酸和恶唑酸对该活性的抑制可能解释了这些药物对DNA合成的抑制。

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