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分枝杆菌DNA促旋酶:酶的纯化及超螺旋活性的特性分析

Mycobacterial DNA gyrase: enzyme purification and characterization of supercoiling activity.

作者信息

Wu L C, Shahied S I

机构信息

Public Health Laboratory, New Jersey State Department of Health, Trenton 08625-0360, USA.

出版信息

Arch Biochem Biophys. 1995 Dec 1;324(1):123-9. doi: 10.1006/abbi.1995.9919.

Abstract

Putative structural genes encoding Mycobacterium bovis BCG gyrase A and gyrase B subunits were expressed in Escherichia coli under the control of a regulated promoter. Upon induction, high levels of proteins of M(r) 92,000 and 75,000 were generated. Purification and reconstitution of these proteins yielded an enzyme with bacterial DNA gyrase activity. DNA supercoiling activity of the mycobacterial enzyme required ATP, Mg2+, and spermidine. Like other bacterial DNA gyrases, the supercoiling activity of the mycobacterial enzyme was inhibited by low concentration of the classical gyrase B subunit inhibitors novobiocin and coumermycin. Older gyrase A subunit inhibitors, nalidixic and oxolinic acid, had no effect on the supercoiling activity at 400 to 800 micrograms/ml. However, in vitro assays to show the inhibition of supercoiling activity and stimulation of cleavable complex formation demonstrated that ciprofloxacin is a potent inhibitor of mycobacterial DNA gyrase. The availability of highly purified mycobacterial DNA gyrase could aid in future investigations of quinolone derivatives targeting Mycobacterium specifically.

摘要

编码牛分枝杆菌卡介苗(Mycobacterium bovis BCG)促旋酶A和促旋酶B亚基的推定结构基因,在一个受调控启动子的控制下于大肠杆菌中表达。诱导后,产生了高水平的分子量为92,000和75,000的蛋白质。这些蛋白质的纯化和重组产生了一种具有细菌DNA促旋酶活性的酶。分枝杆菌酶的DNA超螺旋活性需要ATP、Mg2+和亚精胺。与其他细菌DNA促旋酶一样,分枝杆菌酶的超螺旋活性受到低浓度的经典促旋酶B亚基抑制剂新生霉素和香豆霉素的抑制。较老的促旋酶A亚基抑制剂萘啶酸和恶喹酸,在400至800微克/毫升时对超螺旋活性没有影响。然而,显示超螺旋活性抑制和可切割复合物形成刺激的体外试验表明,环丙沙星是分枝杆菌DNA促旋酶的有效抑制剂。高度纯化的分枝杆菌DNA促旋酶的可得性,有助于未来对专门靶向分枝杆菌的喹诺酮衍生物的研究。

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