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新兴病原体鲍曼不动杆菌的铜抗性

Copper Resistance of the Emerging Pathogen Acinetobacter baumannii.

作者信息

Williams Caitlin L, Neu Heather M, Gilbreath Jeremy J, Michel Sarah L J, Zurawski Daniel V, Merrell D Scott

机构信息

Department of Microbiology and Immunology, Uniformed Services University of the Health Sciences, Bethesda, Maryland, USA.

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland, USA.

出版信息

Appl Environ Microbiol. 2016 Sep 30;82(20):6174-6188. doi: 10.1128/AEM.01813-16. Print 2016 Oct 15.

Abstract

UNLABELLED

Acinetobacter baumannii is an important emerging pathogen that is capable of causing many types of severe infection, especially in immunocompromised hosts. Since A. baumannii can rapidly acquire antibiotic resistance genes, many infections are on the verge of being untreatable, and novel therapies are desperately needed. To investigate the potential utility of copper-based antibacterial strategies against Acinetobacter infections, we characterized copper resistance in a panel of recent clinical A. baumannii isolates. Exposure to increasing concentrations of copper in liquid culture and on solid surfaces resulted in dose-dependent and strain-dependent effects; levels of copper resistance varied broadly across isolates, possibly resulting from identified genotypic variation among strains. Examination of the growth-phase-dependent effect of copper on A. baumannii revealed that resistance to copper increased dramatically in stationary phase. Moreover, A. baumannii biofilms were more resistant to copper than planktonic cells but were still susceptible to copper toxicity. Exposure of bacteria to subinhibitory concentrations of copper allowed them to better adapt to and grow in high concentrations of copper; this copper tolerance response is likely achieved via increased expression of copper resistance mechanisms. Indeed, genomic analysis revealed numerous putative copper resistance proteins that share amino acid homology to known proteins in Escherichia coli and Pseudomonas aeruginosa Transcriptional analysis revealed significant upregulation of these putative copper resistance genes following brief copper exposure. Future characterization of copper resistance mechanisms may aid in the search for novel antibiotics against Acinetobacter and other highly antibiotic-resistant pathogens.

IMPORTANCE

Acinetobacter baumannii causes many types of severe nosocomial infections; unfortunately, some isolates have acquired resistance to almost every available antibiotic, and treatment options are incredibly limited. Copper is an essential nutrient but becomes toxic at high concentrations. The inherent antimicrobial properties of copper give it potential for use in novel therapeutics against drug-resistant pathogens. We show that A. baumannii clinical isolates are sensitive to copper in vitro, both in liquid and on solid metal surfaces. Since bacterial resistance to copper is mediated though mechanisms of efflux and detoxification, we identified genes encoding putative copper-related proteins in A. baumannii and showed that expression of some of these genes is regulated by the copper concentration. We propose that the antimicrobial effects of copper may be beneficial in the development of future therapeutics that target multidrug-resistant bacteria.

摘要

未标记

鲍曼不动杆菌是一种重要的新兴病原体,能够引起多种严重感染,尤其是在免疫功能低下的宿主中。由于鲍曼不动杆菌能够迅速获得抗生素耐药基因,许多感染几乎无法治疗,因此迫切需要新的治疗方法。为了研究基于铜的抗菌策略对不动杆菌感染的潜在效用,我们对一组近期临床分离的鲍曼不动杆菌菌株的铜耐药性进行了表征。在液体培养物中和固体表面上暴露于不断增加浓度的铜会产生剂量依赖性和菌株依赖性效应;不同菌株的铜耐药水平差异很大,这可能是由于菌株间已确定的基因型变异所致。对铜对鲍曼不动杆菌生长阶段依赖性影响的研究表明,在稳定期对铜的耐药性显著增加。此外,鲍曼不动杆菌生物膜比浮游细胞对铜更具耐药性,但仍对铜毒性敏感。将细菌暴露于亚抑制浓度的铜中可使其更好地适应高浓度铜并在其中生长;这种铜耐受性反应可能是通过增加铜耐药机制的表达来实现的。事实上,基因组分析揭示了许多假定的铜耐药蛋白,它们与大肠杆菌和铜绿假单胞菌中的已知蛋白具有氨基酸同源性。转录分析表明,在短暂暴露于铜后,这些假定的铜耐药基因显著上调。未来对铜耐药机制的表征可能有助于寻找针对不动杆菌和其他高度耐药病原体的新型抗生素。

重要性

鲍曼不动杆菌可引起多种严重的医院感染;不幸的是,一些分离株已对几乎所有可用抗生素产生耐药性,治疗选择极其有限。铜是一种必需营养素,但在高浓度时会产生毒性。铜固有的抗菌特性使其有潜力用于对抗耐药病原体的新型治疗方法。我们表明,鲍曼不动杆菌临床分离株在体外对铜敏感,无论是在液体中还是在固体金属表面上。由于细菌对铜的耐药性是通过外排和解毒机制介导的,我们在鲍曼不动杆菌中鉴定了编码假定的铜相关蛋白的基因,并表明其中一些基因的表达受铜浓度调节。我们认为,铜的抗菌作用可能有利于开发针对多重耐药细菌的未来治疗方法。

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