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Functional Analysis of the Protein Machinery Required for Transport of Lipopolysaccharide to the Outer Membrane of Escherichia coli

机译:脂多糖转运至大肠杆菌外膜所需的蛋白质机制的功能分析

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Lipopolysaccharide (LPS) is an essential component of the outer membrane (OM) in most gram-negative bacteria, and its structure and biosynthetic pathway are well known. Nevertheless, the mechanisms of transport and assembly of this molecule at the cell surface are poorly understood. The inner membrane (IM) transport protein MsbA is responsible for flipping LPS across the IM. Additional components of the LPS transport machinery downstream of MsbA have been identified, including the OM protein complex LptD/LptE (formerly Imp/RlpB), the periplasmic LptA protein, the IM-associated cytoplasmic ATP binding cassette protein LptB, and LptC (formerly YrbK), an essential IM component of the LPS transport machinery characterized in this work. Here we show that depletion of any of the proteins mentioned above leads to common phenotypes, including (i) the presence of abnormal membrane structures in the periplasm, (ii) accumulation of de novo-synthesized LPS in two membrane fractions with lower density than the OM, and (iii) accumulation of a modified LPS, which is ligated to repeating units of colanic acid in the outer leaflet of the IM. Our results suggest that LptA, LptB, LptC, LptD, and LptE operate in the LPS assembly pathway and, together with other as-yet-unidentified components, could be part of a complex devoted to the transport of LPS from the periplasmic surface of the IM to the OM. Moreover, the location of at least one of these five proteins in every cellular compartment suggests a model for how the LPS assembly pathway is organized and ordered in space.
机译:脂多糖(LPS)是大多数革兰氏阴性细菌外膜(OM)的重要组成部分,其结构和生物合成途径是众所周知的。然而,对该分子在细胞表面的运输和组装的机制了解甚少。内膜(IM)转运蛋白MsbA负责使LPS跨IM翻转。已经确定了MsbA下游LPS转运机制的其他组件,包括OM蛋白复合物LptD / LptE(以前称为Imp / RlpB),周质LptA蛋白,与IM相关的胞质ATP结合盒蛋白LptB和LptC(以前称为YrbK) ),这是LPS运输机械的基本IM组件。在这里,我们显示上述任何蛋白质的消耗都会导致常见的表型,包括(i)周质中存在异常的膜结构,(ii)从头合成的LPS堆积在两个膜级分中,密度比膜低。 OM,以及(iii)修饰的LPS的积累,该修饰的LPS与IM外部小叶中可乐酸的重复单元连接。我们的研究结果表明LptA,LptB,LptC,LptD和LptE在LPS组装途径中运作,并且与尚未确定的其他成分一起,可能是从LPS的周质表面转运LPS的复合物的一部分。 IM到OM。此外,这五个蛋白质中至少一个在每个细胞区室中的位置提示了LPS组装途径如何在空间中组织和有序的模型。

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