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Probing the role of the ATP-operated clamp in the strand-passage reaction of DNA gyrase

机译:探索ATP操纵的钳位在DNA旋转酶的链通道反应中的作用

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摘要

The high-resolution structure of the 43 kDa N-terminal fragment of the DNA gyrase B protein shows a large cavity within the protein dimer. The approximate size of this cavity is 20 A , suggesting it could accommodate a DNA helix. Computer-modelling studies of this cavity suggest that it contains a constriction, reducing the width to approx 13 A, principally caused by the side chain of Arg286. We have used site-directed mutagenesis to alter this residue to Gln. Gyrase bearing this mutation shows virtually no supercoiling activity and near-normal relaxation and DNA cleavage activities. The mutated protein has ATPase activity which cannot be stimulated by DNA. These data support the proposed role of the 43 kDa domain as an ATP-operated clamp which binds DNA during the supercoiling cycle. The lack of DNA-dependent ATPase of the mutant may indicate that binding of DNA within the clamp is a prerequisite for stimulation of the ATPase activity.
机译:DNA促旋酶B蛋白43 kDa N端片段的高分辨率结构在蛋白二聚体中显示出一个大空腔。该腔的大小约为20 A,表明它可以容纳DNA螺旋。对这种腔的计算机建模研究表明,该腔包含一个收缩,将宽度减小到大约13 A,这主要是由Arg286的侧链引起的。我们已经使用定点诱变将这个残基改变为Gln。带有该突变的促旋酶几乎没有显示超螺旋活性,并且几乎没有正常的松弛和DNA切割活性。突变的蛋白质具有无法被DNA刺激的ATPase活性。这些数据支持了43 kDa结构域作为ATP操纵的钳位的提议作用,该钳位在超螺旋循环中与DNA结合。突变体缺乏依赖DNA的ATPase可能表明夹具中DNA的结合是刺激ATPase活性的先决条件。

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