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牛分枝杆菌 BCG 中 Tap 外排泵的功能和遗传特征。

Functional and genetic characterization of the tap efflux pump in Mycobacterium bovis BCG.

机构信息

Departamento de Microbiología, Medicina Preventiva y Salud Pública, Universidad de Zaragoza, Zaragoza, Spain.

出版信息

Antimicrob Agents Chemother. 2012 Apr;56(4):2074-83. doi: 10.1128/AAC.05946-11. Epub 2012 Jan 9.

Abstract

Efflux pumps extrude a wide variety of chemically unrelated compounds conferring multidrug resistance and participating in numerous physiological processes. Mycobacterium tuberculosis possesses many efflux pumps, and their roles in drug resistance and physiology are actively investigated. In this work we found that tap mutant cells showed changes in morphology and a progressive loss of viability upon subcultivation in liquid medium. Transcriptome analysis in Mycobacterium bovis BCG revealed that disruption of the Rv1258c gene, encoding the Tap efflux pump, led to an extensive change in gene expression patterns during stationary phase, with no changes during exponential growth. In stationary phase, Tap inactivation triggered a general stress response and led to a general repression of genes involved in cell wall biosynthesis, in particular the formation of the peptidoglycan; this suggested the accumulation of an unknown Tap substrate that reaches toxic concentrations during stationary phase. We also found that both disruption and overexpression of tap altered susceptibility to many clinically approved antibiotics in M. bovis BCG. Acriflavine and tetracycline accumulation assays and carbonyl cyanide m-chlorophenylhydrazone (CCCP) potentiation experiments demonstrated that this phenotype was due to an active efflux mechanism. These findings emphasize the important role of the Tap efflux pump in bacterial physiology and intrinsic drug resistance.

摘要

外排泵可将多种化学上无关的化合物排出细胞,从而赋予细菌多药耐药性并参与多种生理过程。结核分枝杆菌拥有多种外排泵,其在耐药性和生理学方面的作用正受到广泛研究。在本工作中,我们发现 tap 突变细胞在液体培养基中传代培养时形态发生变化,活力逐渐丧失。对牛分枝杆菌 BCG 的转录组分析显示,敲除编码 Tap 外排泵的 Rv1258c 基因导致其在静止期的基因表达模式发生广泛变化,而在指数生长期无变化。在静止期,Tap 失活引发一般应激反应,并导致细胞壁生物合成相关基因的普遍抑制,特别是肽聚糖的形成;这表明 Tap 积累了一种未知的底物,该底物在静止期达到毒性浓度。我们还发现 tap 的敲除和过表达均改变了牛分枝杆菌 BCG 对许多临床批准抗生素的敏感性。吖啶黄和四环素积累实验以及羰基氰化物 m-氯苯腙(CCCP)增效实验表明,该表型是由于一种主动外排机制所致。这些发现强调了 Tap 外排泵在细菌生理学和固有耐药性方面的重要作用。

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