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脂蛋白转运:为外膜生物发生的机器加油:在探索新发现和问题的同时,重新审视不同革兰氏阴性菌中的脂蛋白转运机制。

Lipoprotein Transport: Greasing the Machines of Outer Membrane Biogenesis: Re-Examining Lipoprotein Transport Mechanisms Among Diverse Gram-Negative Bacteria While Exploring New Discoveries and Questions.

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322, USA.

Division of Infectious Disease, Department of Medicine, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Bioessays. 2018 Apr;40(4):e1700187. doi: 10.1002/bies.201700187. Epub 2018 Mar 7.

Abstract

The Gram-negative outer membrane (OM) is a potent permeability barrier against antibiotics, limiting clinical options amid mounting rates of resistance. The Lol transport pathway delivers lipoproteins to the OM. All the OM assembly machines require one or more OM lipoprotein to function, making the Lol pathway central for all aspects of OM biogenesis. The Lol pathways of many medically important species clearly deviate from the Escherichia coli paradigm, perhaps with implications for efforts to develop novel antibiotics. Moreover, recent work reveals the existence of an undiscovered alternate route for bringing lipoproteins to the OM. Here, lipoprotein transport mechanisms, and the quality control systems that underpin them, is re-examined in context of their diversity.

摘要

革兰氏阴性外膜(OM)是一种对抗生素具有强大通透性的屏障,在耐药率不断上升的情况下,限制了临床选择。Lol 转运途径将脂蛋白递送到 OM。所有 OM 组装机器都需要一个或多个 OM 脂蛋白才能发挥作用,因此 Lol 途径是 OM 生物发生的所有方面的核心。许多医学上重要物种的 Lol 途径显然偏离了大肠杆菌模式,这可能对开发新型抗生素的努力产生影响。此外,最近的工作揭示了一种将脂蛋白递送到 OM 的未被发现的替代途径的存在。在这里,重新检查了脂蛋白转运机制及其支撑的质量控制系统,以了解它们的多样性。

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