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Correct Sorting of Lipoproteins into the Inner and Outer Membranes of Pseudomonas aeruginosa by the Escherichia coli LolCDE Transport System

机译:通过 Escherichia将脂蛋白正确分类为铜绿假单胞菌的内膜和外膜coli LolCDE传输系统

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Gram-negative bacteria build their outer membranes (OM) from components that are initially located in the inner membrane (IM). A fraction of lipoproteins is transferred to the OM by the transport machinery consisting of LolABCDE proteins. Our work demonstrates that the LolCDE complexes of the transport pathways of Escherichia coli and Pseudomonas aeruginosa are interchangeable, with the E. coli orthologues correctly sorting the P. aeruginosa lipoproteins while retaining their sensitivity to a small-molecule inhibitor. These findings question the nature of IM retention signals, identified in E. coli as aspartate at position +2 of mature lipoproteins. We propose an alternative model for the sorting of IM and OM lipoproteins based on their relative affinities for the IM and the ability of the promiscuous sorting machinery to deliver lipoproteins to their functional sites in the OM. ABSTRACT Biogenesis of the outer membrane of Gram-negative bacteria depends on dedicated macromolecular transport systems. The LolABCDE proteins make up the machinery for lipoprotein trafficking from the inner membrane (IM) across the periplasm to the outer membrane (OM). The Lol apparatus is additionally responsible for differentiating OM lipoproteins from those for the IM. In Enterobacteriaceae , a default sorting mechanism has been proposed whereby an aspartic acid at position +2 of the mature lipoproteins prevents Lol recognition and leads to their IM retention. In other bacteria, the conservation of sequences immediately following the acylated cysteine is variable. Here we show that in Pseudomonas aeruginosa , the three essential Lol proteins (LolCDE) can be replaced with those from Escherichia coli . The P. aeruginosa lipoproteins MexA, OprM, PscJ, and FlgH, with different sequences at their N termini, were correctly sorted by either the E. coli or P. aeruginosa LolCDE. We further demonstrate that an inhibitor of E. coli LolCDE is active against P. aeruginosa only when expressing the E. coli orthologues. Our work shows that Lol proteins recognize a wide range of signals, consisting of an acylated cysteine and a specific conformation of the adjacent domain, determining IM retention or transport to the OM.
机译:革兰氏阴性细菌由最初位于内膜(IM)中的组件构成其外膜(OM)。一部分脂蛋白通过由LolABCDE蛋白组成的转运机制转移到OM。我们的工作表明,大肠杆菌和铜绿假单胞菌的运输途径的LolCDE复合物是可互换的,而大肠杆菌直向同源物正确地分类了铜绿假单胞菌脂蛋白,同时保留了它们对小分子抑制剂的敏感性。这些发现对IM保留信号的性质提出了质疑,IM保留信号是在大肠杆菌中在成熟脂蛋白的+2位天冬氨酸鉴定的。我们根据IM和OM脂蛋白对IM的相对亲和力以及混杂分选机制将脂蛋白传递到OM中功能位点的能力,提出了IM和OM脂蛋白分选的替代模型。摘要革兰氏阴性细菌外膜的生物发生取决于专用的大分子转运系统。 LolABCDE蛋白质构成脂蛋白从内膜(IM)穿过周质运输到外膜(OM)的机制。 Lol仪器还负责将OM脂蛋白与IM脂蛋白区分开。在肠杆菌科中,已经提出了默认的分类机制,据此,成熟脂蛋白+2位的天冬氨酸会阻止Lol识别并导致IM保留。在其他细菌中,紧随酰化半胱氨酸之后的序列保守性是可变的。在这里,我们显示在铜绿假单胞菌中,三种必需的Lol蛋白(LolCDE)可以被大肠杆菌中的蛋白取代。铜绿假单胞菌脂蛋白MexA,OprM,PscJ和FlgH在其N末端具有不同的序列,可以通过大肠杆菌或铜绿假单胞菌LolCDE正确分类。我们进一步证明,仅当表达大肠杆菌直系同源物时,大肠杆菌LolCDE抑制剂才对铜绿假单胞菌具有活性。我们的工作表明,Lol蛋白能够识别多种信号,包括酰化的半胱氨酸和相邻域的特定构象,从而决定IM的保留或转运至OM。

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