Multiantibiotic resistance caused by active drug extrusion in Pseudomonas aeruginosa and other gram-negative bacteria.

Microbiologia (Madrid, Spain) Pub Date : 1997-09-01
T Nakae
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引用次数: 0

Abstract

All living organisms have been exposed to noxious compounds throughout their long evolutionary history and those surviving have evolved to fabricate devices that detoxicate and extrude these life threatening substances. It is likely, therefore, that all viable organisms, from bacteria to mammals, are equipped with active extrusion machinery. When bacteria are attacked by antibiotics, they use these tactics to combat the drugs and to develop resistance. Drugs extrusion machinery in Gram-negative bacteria is complex, consisting of the inner membrane transporter which acts as an energy-dependent extrusion pump; a binding protein which presumably connect both membranes; and the outer membrane exit channel. The extrusion pump assemblies are often encoded by chromosomal genes and might be expressed by mutation(s) or induced in the presence of drug(s).

铜绿假单胞菌和其他革兰氏阴性菌活性药物挤压引起的多重抗生素耐药。
在漫长的进化过程中,所有的生物都暴露在有毒化合物中,而那些幸存下来的生物已经进化到制造出排毒和挤出这些威胁生命的物质的装置。因此,从细菌到哺乳动物,所有能活的生物都可能配备了主动挤压机器。当细菌受到抗生素的攻击时,它们使用这些策略来对抗药物并产生耐药性。革兰氏阴性菌的药物挤出机制是复杂的,由内膜转运体组成,它是一个能量依赖的挤出泵;连接两层膜的结合蛋白;外膜出口通道。挤出泵组件通常由染色体基因编码,并可能通过突变或在药物存在下诱导表达。
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