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The Membrane Composition Defines the Spatial Organization and Function of a Major Acinetobacter baumannii Drug Efflux System

机译:膜组合物定义了主要<命名含量含量型=“属型”> AcineTobacterBaumannii 药物流出系统的空间组织和功能

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ABSTRACT Acinetobacter baumannii is one of the world’s most problematic nosocomial pathogens. The combination of its intrinsic resistance and ability to acquire resistance markers allow this organism to adjust to antibiotic treatment. Despite being the primary barrier against antibiotic stress, our understanding of the A. baumannii membrane composition and its impact on resistance remains limited. In this study, we explored how the incorporation of host-derived polyunsaturated fatty acids (PUFAs) is associated with increased antibiotic susceptibility. Functional analyses of primary A. baumannii efflux systems indicated that AdeB-mediated antibiotic resistance was impacted by PUFA treatment. Molecular dynamics simulations of AdeB identified a specific morphological disruption of AdeB when positioned in the PUFA-enriched membrane. Collectively, we have shown that PUFAs can impact antibiotic efficacy via a vital relationship with antibiotic efflux pumps. Furthermore, this work has revealed that A. baumannii ’s unconditional desire for fatty acids may present a possible weakness in its multidrug resistance capacity.
机译:摘要Acinetobacter Baumannii是世界上最有问题的医院病原体之一。其特性抵抗力和获取阻力标记的能力使得这种有机体能够适应抗生素治疗。尽管是对抗抗生素应激的主要障碍,但我们对A.Baumannii膜组成的理解及其对抗性的影响仍然有限。在这项研究中,我们探讨了如何掺入宿主衍生的多不饱和脂肪酸(PUFA)与抗生素易感性增加有关。原发性A. Baumannii Efflux系统的功能分析表明,ADEB介导的抗生素抗性受到PUFA治疗的影响。当定位在富含PUFA的膜时,ADEB的分子动力学模拟鉴定了ADEB的特定形态破坏。统称,我们已经表明,PUFA通过与抗生素排出泵的重要关系影响抗生素效果。此外,这项工作透露,A.Baumannii对脂肪酸的无条件欲望可能在其多药耐药容量中具有可能的弱点。

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