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新型强效氟喹诺酮类药物DU-6859a的C-8取代基对其抗铜绿假单胞菌DNA旋转酶突变体活性的贡献。

Contribution of the C-8 substituent of DU-6859a, a new potent fluoroquinolone, to its activity against DNA gyrase mutants of Pseudomonas aeruginosa.

作者信息

Kitamura A, Hoshino K, Kimura Y, Hayakawa I, Sato K

机构信息

Exploratory Research Laboratories I, Daiichi Pharmaceutical Co., Ltd., Tokyo, Japan.

出版信息

Antimicrob Agents Chemother. 1995 Jul;39(7):1467-71. doi: 10.1128/AAC.39.7.1467.

Abstract

Inhibitory effects of five quinolones against DNA gyrases purified from four quinolone-resistant clinical isolates of Pseudomonas aeruginosa and the quinolone-susceptible strain PAO1 were examined. All of the quinolone-resistant strains tested were found to be DNA gyrase mutants. The 50% inhibitory concentrations (IC50s) of the quinolones for these DNA gyrases roughly correlated with their MICs. Interestingly, gyrase inhibition by DU-6859a was found to be significantly less affected by these mutations that inhibition by other currently available quinolones. To assess the enhanced activity shown by DU-6859a, the effects of quinolones with altered substituents at the N-1, C-7, and C-8 positions of the quinolone ring of DU-6859a were tested. Measurement of MICs for four DNA gyrase mutants and IC50s for their purified DNA gyrases showed that removal of the C-8 chlorine of DU-6859a significantly increased MICs and IC50s for DNA gyrase mutants. However, no deleterious effects were observed when either the fluorine on the cyclopropyl substituent at the N-1 position or the cyclopropyl ring at the C-7 substituent was removed. Moreover, removal of the C-8 chlorine also increased the MIC for 19 of 20 quinolone-resistant clinical isolates. Our results led to the conclusion that DU-6859a is much more active against quinolone-resistant clinical isolates of P. aeruginosa than other currently available quinolones, probably because of its strong inhibitory effects against mutant quinolone-resistant DNA gyrases, and that the C-8 chlorine is necessary for these potent effects.

摘要

检测了五种喹诺酮类药物对从四种耐喹诺酮临床分离株铜绿假单胞菌以及喹诺酮敏感菌株PAO1中纯化得到的DNA回旋酶的抑制作用。所有测试的耐喹诺酮菌株均为DNA回旋酶突变体。这些喹诺酮类药物对这些DNA回旋酶的50%抑制浓度(IC50)与其最低抑菌浓度(MIC)大致相关。有趣的是,发现DU-6859a对DNA回旋酶的抑制作用受这些突变的影响明显小于其他现有喹诺酮类药物。为了评估DU-6859a所表现出的增强活性,测试了在DU-6859a喹诺酮环的N-1、C-7和C-8位具有改变取代基的喹诺酮类药物的作用。对四种DNA回旋酶突变体的MIC测定以及对其纯化的DNA回旋酶的IC50测定表明,去除DU-6859a的C-8氯显著增加了DNA回旋酶突变体的MIC和IC50。然而,当去除N-1位环丙基取代基上的氟或C-7取代基上的环丙基环时,未观察到有害影响。此外,去除C-8氯也增加了20株耐喹诺酮临床分离株中19株的MIC。我们的结果得出结论,DU-6859a对耐喹诺酮临床分离株铜绿假单胞菌的活性比其他现有喹诺酮类药物高得多,这可能是因为它对突变的耐喹诺酮DNA回旋酶具有强烈的抑制作用,并且C-8氯对于这些强效作用是必需的。

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