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首页> 外文期刊>MBio >Contribution of Resistance-Nodulation-Cell Division Efflux Systems to Antibiotic Resistance and Biofilm Formation in Acinetobacter baumannii
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Contribution of Resistance-Nodulation-Cell Division Efflux Systems to Antibiotic Resistance and Biofilm Formation in Acinetobacter baumannii

机译:耐药-结节-细胞分裂外排系统对鲍曼不动杆菌的耐药性和生物膜形成的贡献

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摘要

ABSTRACT Acinetobacter baumannii is a nosocomial pathogen of increasing importance due to its multiple resistance to antibiotics and ability to survive in the hospital environment linked to its capacity to form biofilms. To fully characterize the contribution of AdeABC, AdeFGH, and AdeIJK resistance-nodulation-cell division (RND)-type efflux systems to acquired and intrinsic resistance, we constructed, from an entirely sequenced susceptible A.?baumannii strain, a set of isogenic mutants overexpressing each system following introduction of a point mutation in their cognate regulator or a deletion for the pump by allelic replacement. Pairwise comparison of every derivative with the parental strain indicated that AdeABC and AdeFGH are tightly regulated and contribute to acquisition of antibiotic resistance when overproduced. AdeABC had a broad substrate range, including β-lactams, fluoroquinolones, tetracyclines-tigecycline, macrolides-lincosamides, and chloramphenicol, and conferred clinical resistance to aminoglycosides. Importantly, when combined with enzymatic resistance to carbapenems and aminoglycosides, this pump contributed in a synergistic fashion to the level of resistance of the host. In contrast, AdeIJK was expressed constitutively and was responsible for intrinsic resistance to the same major drug classes as AdeABC as well as antifolates and fusidic acid. Surprisingly, overproduction of AdeABC and AdeIJK altered bacterial membrane composition, resulting in decreased biofilm formation but not motility. Natural transformation and plasmid transfer were diminished in recipients overproducing AdeABC. It thus appears that alteration in the expression of efflux systems leads to multiple changes in the relationship between the host and its environment, in addition to antibiotic resistance. IMPORTANCE Increased expression of chromosomal genes for RND-type efflux systems plays a major role in bacterial multidrug resistance. Acinetobacter baumannii has recently emerged as an important human pathogen responsible for epidemics of hospital-acquired infections. Besides its remarkable ability to horizontally acquire resistance determinants, it has a broad intrinsic resistance due to low membrane permeability, endogenous resistance genes, and antibiotic efflux. The study of isogenic mutants from a susceptible A.?baumannii clinical isolate overproducing or deleted for each of the three major RND-type pumps demonstrated their major contribution to intrinsic resistance and to the synergism between overproduction of an efflux system and acquisition of a resistance gene. We have also shown that modulation of expression of the structural genes for the efflux systems results in numerous alterations in membrane-associated cellular functions, in particular, in a decrease in biofilm formation and resistance gene acquisition.
机译:摘要鲍曼不动杆菌是一种越来越重要的医院病原体,因为它对抗生素具有多重耐药性,并且在医院环境中生存的能力与其形成生物膜的能力有关。为了充分表征AdeABC,AdeFGH和AdeIJK耐药结节性细胞分裂(RND)型外排系统对获得性和内在耐药性的贡献,我们从完全测序的易感鲍曼不动杆菌菌株中构建了一组同基因突变体在其同源调节子中引入点突变或通过等位基因置换删除泵后,过表达每个系统。每种衍生物与亲本菌株的成对比较表明,AdeABC和AdeFGH受到严格调节,并在过量生产时有助于获得抗生素抗性。 AdeABC具有广泛的底物范围,包括β-内酰胺类,氟喹诺酮类,四环素-替加环素,大环内酯类-林可酰胺类和氯霉素,并赋予了临床对氨基糖苷类耐药性。重要的是,当与对碳青霉烯类和氨基糖苷类的酶抗性相结合时,该泵以协同方式对宿主的抗性水平作出贡献。相反,AdeIJK组成型表达,并且对与AdeABC以及抗叶酸药和夫西地酸相同的主要药物类别具有内在抗性。出人意料的是,AdeABC和AdeIJK的过量生产改变了细菌膜的组成,导致生物膜形成减少,但没有运动性。在过量产生AdeABC的受体中自然转化和质粒转移减少。因此看来,除了抗生素抗性外,外排系统表达的改变导致宿主与其环境之间关系的多种变化。重要事项RND型外排系统的染色体基因表达增加在细菌多药耐药性中起主要作用。鲍曼不动杆菌最近已成为重要的人类病原体,负责医院获得性感染的流行。除了具有水平获取抗性决定簇的出色能力外,由于低的膜通透性,内源性抗性基因和抗生素外排,它还具有广泛的内在抗性。对三种主要RND型泵中过量生产或缺失的易感鲍曼不动杆菌临床分离株的同基因突变体的研究表明,它们对内在抗性以及对外排系统超量生产与获得抗性基因之间的协同作用有重要贡献。我们还表明,外排系统结构基因表达的调节导致膜相关细胞功能的许多改变,特别是生物膜形成和抗性基因获得的减少。

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