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An ace up their sleeve: a transcriptomic approach exposes the AceI efflux protein of Acinetobacter baumannii and reveals the drug efflux potential hidden in many microbial pathogens

机译:领头羊:转录组学方法暴露了鲍曼不动杆菌的AceI euxux蛋白,并揭示了许多微生物病原体中隐藏的药物euxux潜力

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摘要

The era of antibiotics as a cure-all for bacterial infections appears to be coming to an end. The emergence of multidrug resistance in many hospital-associated pathogens has resulted in “superbugs” that are effectively untreatable. Multidrug efflux pumps are well known mediators of bacterial drug resistance. Genome sequencing efforts have highlighted an abundance of putative efflux pump genes in bacteria. However, it is not clear how many of these pumps play a role in antimicrobial resistance. Efflux pump genes that participate in drug resistance can be under tight regulatory control and expressed only in response to substrates. Consequently, changes in gene expression following antimicrobial shock may be used to identify efflux pumps that mediate antimicrobial resistance. Using this approach we have characterized several novel efflux pumps in bacteria. In one example we recently identified the Acinetobacter chlorhexidine efflux protein (AceI) efflux pump in Acinetobacter. AceI is a prototype for a novel family of multidrug efflux pumps conserved in many proteobacterial lineages. The discovery of this family raises the possibility that additional undiscovered intrinsic resistance proteins may be encoded in the core genomes of pathogenic bacteria.
机译:抗生素作为细菌感染的万灵药的时代似乎即将结束。在许多与医院相关的病原体中多药耐药性的出现导致了实际上无法治愈的“超级细菌”。 Multidrug eflux泵是细菌耐药性的众所周知的介质。基因组测序工作突出了细菌中大量推定的泵浦基因。但是,目前尚不清楚这些泵中有多少在抗药性中起作用。参与耐药性的Euxux泵基因可以受到严格的调控,并且仅在对底物的反应中表达。因此,抗微生物休克后基因表达的变化可用于鉴定介导抗微生物剂耐药性的电动泵。使用这种方法,我们对细菌中的几种新型电子泵进行了表征。在一个例子中,我们最近在不动杆菌中鉴定了不动杆菌洗必泰洗出蛋白(AceI)洗出泵。 AceI是新型细菌多泵系列产品的原型,这些泵保存在许多蛋白细菌谱系中。该家族的发现增加了可能在致病细菌的核心基因组中编码其他未发现的内在抗性蛋白的可能性。

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