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Cryo-EM Determination of Eravacycline-Bound Structures of the Ribosome and the Multidrug Efflux Pump AdeJ of Acinetobacter baumannii

机译:Cryo-EM测定核糖体的核苷酸伯氏植物束缚结构和<命名含量含量型=“属型”> b b b(Genus-incies)的腹泻泵Adej>

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ABSTRACT Antibiotic-resistant strains of the Gram-negative pathogen Acinetobacter baumannii have emerged as a significant global health threat. One successful therapeutic option to treat bacterial infections has been to target the bacterial ribosome. However, in many cases, multidrug efflux pumps within the bacterium recognize and extrude these clinically important antibiotics designed to inhibit the protein synthesis function of the bacterial ribosome. Thus, multidrug efflux within A. baumannii and other highly drug-resistant strains is a major cause of failure of drug-based treatments of infectious diseases. We here report the first structures of the A cinetobacter d rug e fflux (Ade)J pump in the presence of the antibiotic eravacycline, using single-particle cryo-electron microscopy (cryo-EM). We also describe cryo-EM structures of the eravacycline-bound forms of the A. baumannii ribosome, including the 70S, 50S, and 30S forms. Our data indicate that the AdeJ pump primarily uses hydrophobic interactions to bind eravacycline, while the 70S ribosome utilizes electrostatic interactions to bind this drug. Our work here highlights how an antibiotic can bind multiple bacterial targets through different mechanisms and potentially enables drug optimization by taking advantage of these different modes of ligand binding.
机译:摘要抗生素抗性抗性病原体的抗生素菌株Baumannii被赋予了重大的全球健康威胁。治疗细菌感染的一个成功的治疗选择是靶向细菌核糖体。然而,在许多情况下,细菌内的MultiDrug Efflux泵识别并挤出这些临床重要的抗生素,旨在抑制细菌核糖体的蛋白质合成功能。因此,在A.Baumannii和其他高耐药性菌株内的多药渗透是传染病的药物治疗失败的主要原因。我们在此报告了使用单粒子冷冻电子显微镜(Cryo-EM)的抗生素替代杂环素的Cinetobacter D Rug E FFLUX(ADE)J泵的第一个结构。我们还描述了A.Baumannii核糖体的Eravacycline键形式的Cryo-EM结构,包括70s,50s和30s形式。我们的数据表明ADEJ泵主要使用疏水性相互作用来结合Eravacycline,而70s核糖体利用静电相互作用结合该药物。我们在这里的工作突出了抗生素如何通过不同的机制结合多种细菌靶,并且通过利用这些不同的配体结合模式,可能能够实现药物优化。

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