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TipN极性因子与AcrAB家族外排泵之间的合成相互作用表明细胞极性与细菌耐药性有关。

Synthetic interaction between the TipN polarity factor and an AcrAB-family efflux pump implicates cell polarity in bacterial drug resistance.

作者信息

Kirkpatrick Clare L, Viollier Patrick H

机构信息

Department of Microbiology & Molecular Medicine, Institute of Genetics & Genomics in Geneva (iGE3), Faculty of Medicine/CMU, University of Geneva, Rue Michel Servet 1, 1211 Genève 4, Switzerland.

Department of Microbiology & Molecular Medicine, Institute of Genetics & Genomics in Geneva (iGE3), Faculty of Medicine/CMU, University of Geneva, Rue Michel Servet 1, 1211 Genève 4, Switzerland.

出版信息

Chem Biol. 2014 May 22;21(5):657-65. doi: 10.1016/j.chembiol.2014.02.018. Epub 2014 Apr 10.

Abstract

Quinolone antibiotics are clinically important drugs that target bacterial DNA replication and chromosome segregation. Although the AcrAB-family efflux pumps generally protect bacteria from such drugs, the physiological role of these efflux systems and their interplay with other cellular events are poorly explored. Here, we report an intricate relationship between antibiotic resistance and cell polarity in the model bacterium Caulobacter crescentus. We show that a polarity landmark protein, TipN, identified by virtue of its ability to direct flagellum placement to the new cell pole, protects cells from toxic misregulation of an AcrAB efflux pump through a cis-encoded nalidixic acid-responsive transcriptional repressor. Alongside the importance of polarity in promoting the inheritance and activity of virulence functions including motility, we can now ascribe to it an additional role in drug resistance that is distinct from classical efflux mechanisms.

摘要

喹诺酮类抗生素是临床上重要的药物,其作用靶点是细菌DNA复制和染色体分离。虽然AcrAB家族外排泵通常能保护细菌免受此类药物的影响,但这些外排系统的生理作用及其与其他细胞事件的相互作用仍未得到充分研究。在此,我们报道了模式细菌新月柄杆菌中抗生素抗性与细胞极性之间的复杂关系。我们发现,一种极性标志性蛋白TipN,因其能够将鞭毛定位引导至新的细胞极而被识别,它通过顺式编码的萘啶酸响应转录阻遏物保护细胞免受AcrAB外排泵的毒性失调影响。除了极性在促进包括运动性在内的毒力功能的遗传和活性方面的重要性之外,我们现在还可以将其在耐药性方面的额外作用归因于它,这一作用不同于经典的外排机制。

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