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探究香豆素类化合物和环噻嗪类化合物与DNA促旋酶的结合情况。

Probing the binding of coumarins and cyclothialidines to DNA gyrase.

作者信息

Kampranis S C, Gormley N A, Tranter R, Orphanides G, Maxwell A

机构信息

Department of Biochemistry, University of Leicester, U.K.

出版信息

Biochemistry. 1999 Feb 16;38(7):1967-76. doi: 10.1021/bi982320p.

Abstract

DNA gyrase is the target of a number of antibacterial agents, including the coumarins and the cyclothialidines. To extend our understanding of the mechanism of action of these compounds, we have examined the previously published crystal structures of the complexes between the 24 kDa fragment of GyrB and coumarin and cyclothialidine drugs and made mutations by site-directed mutagenesis. We used proteolysis as a probe of drug binding to wild-type and mutant proteins. Limited proteolysis of gyrase revealed that binding of these antibiotics is associated with a characteristic proteolytic fingerprint, suggesting a drug-induced conformational change. The ability of the mutants to bind the drugs was studied by testing their ability to induce the coumarin-associated proteolytic signature and to bind to a novobiocin-affinity column. To analyze further the interaction of the drugs with gyrase, we studied the binding using surface plasmon resonance. Mutation of Asn46 to Asp has only a modest effect on the binding of coumarins, while an Asn46 to Leu mutation results in a 10-fold decrease in the affinity. Mutation of Asp73 to Asn completely abolishes binding to both coumarins and cyclothialidines. Mutations at these residues also abolish ATP hydrolysis, explaining the inability of such mutations to occur spontaneously.

摘要

DNA促旋酶是包括香豆素类和环硫肽类在内的多种抗菌剂的作用靶点。为了进一步了解这些化合物的作用机制,我们研究了先前发表的GyrB 24 kDa片段与香豆素和环硫肽药物复合物的晶体结构,并通过定点诱变进行了突变。我们使用蛋白酶解作为药物与野生型和突变型蛋白结合的探针。对促旋酶的有限蛋白酶解表明,这些抗生素的结合与一种特征性的蛋白水解指纹相关,这表明药物诱导了构象变化。通过测试突变体诱导香豆素相关蛋白水解特征的能力以及与新生霉素亲和柱结合的能力,研究了突变体与药物结合的能力。为了进一步分析药物与促旋酶的相互作用,我们使用表面等离子体共振研究了结合情况。将Asn46突变为Asp对香豆素的结合只有适度影响,而将Asn46突变为Leu会导致亲和力下降10倍。将Asp73突变为Asn会完全消除与香豆素和环硫肽的结合。这些残基的突变也会消除ATP水解,这解释了此类突变无法自发发生的原因。

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