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空肠弯曲杆菌中CmeABC和CmeDEF在赋予抗菌抗性及维持细胞活力方面的相互作用

Interaction of CmeABC and CmeDEF in conferring antimicrobial resistance and maintaining cell viability in Campylobacter jejuni.

作者信息

Akiba Masato, Lin Jun, Barton Yi-Wen, Zhang Qijing

机构信息

Department of Microbiology and Preventive Medicine, Iowa State University, Ames, IA 50011, USA.

出版信息

J Antimicrob Chemother. 2006 Jan;57(1):52-60. doi: 10.1093/jac/dki419. Epub 2005 Nov 22.

Abstract

OBJECTIVES

To determine the role of CmeDEF in conferring antimicrobial resistance in Campylobacter jejuni and examine the interaction of CmeABC and CmeDEF in mediating antimicrobial resistance and maintaining cell viability.

METHODS

Single and double mutants of cmeF and cmeB were generated in multiple strains using insertional mutagenesis. The mutants were compared with their wild-type strains for antimicrobial susceptibility and growth characteristics. Transcription fusion was used to quantify the expression of cmeDEF and cmeABC. Ethidium bromide (EB) accumulation assay was used to measure the efflux function.

RESULTS

Insertional mutagenesis of the cmeF gene in C. jejuni NCTC 11168 resulted in a 2-fold decrease in the resistance to ampicillin, polymyxin B and EB, whereas the same mutation in C. jejuni 81-176 and 21190 led to a 2-4-fold increase in the resistance to multiple antimicrobials and toxic compounds. The increased resistance in the cmeF mutants of 81-176 and 21190 was associated with the elevated efflux in the mutants. Compared with the cmeB mutant, the cmeF/cmeB double mutants of 81-176 and 21190 showed further decrease in the resistance to various antimicrobials and toxic compounds. Transcription fusion assay indicated that the expression level of cmeF was substantially lower than that of cmeB. Notably, the cmeB/cmeF double mutation, not the single mutations, impaired cell viability in Campylobacter.

CONCLUSIONS

CmeDEF interacts with CmeABC in conferring antimicrobial resistance and maintaining cell viability in C. jejuni. CmeABC is the predominant efflux pump in C. jejuni, whereas CmeDEF plays a secondary role in conferring intrinsic resistance to antimicrobials.

摘要

目的

确定CmeDEF在空肠弯曲菌赋予抗菌药物耐药性中的作用,并研究CmeABC和CmeDEF在介导抗菌药物耐药性及维持细胞活力方面的相互作用。

方法

使用插入诱变技术在多个菌株中构建cmeF和cmeB的单突变体和双突变体。将突变体与其野生型菌株进行抗菌药物敏感性和生长特性比较。采用转录融合技术定量cmeDEF和cmeABC的表达。使用溴化乙锭(EB)积累试验测量外排功能。

结果

空肠弯曲菌NCTC 11168中cmeF基因的插入诱变导致对氨苄西林、多粘菌素B和EB的耐药性降低2倍,而空肠弯曲菌81-176和21190中的相同突变导致对多种抗菌药物和有毒化合物的耐药性增加2-4倍。81-176和21190的cmeF突变体中耐药性增加与突变体中外排增加有关。与cmeB突变体相比,81-176和21190的cmeF/cmeB双突变体对各种抗菌药物和有毒化合物的耐药性进一步降低。转录融合试验表明cmeF的表达水平明显低于cmeB。值得注意的是,cmeB/cmeF双突变而非单突变损害了弯曲菌的细胞活力。

结论

CmeDEF与CmeABC相互作用,赋予空肠弯曲菌抗菌药物耐药性并维持其细胞活力。CmeABC是空肠弯曲菌中的主要外排泵,而CmeDEF在赋予抗菌药物固有耐药性方面起次要作用。

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