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Type IV-Like Pili Formed by the Type II Secreton: Specificity Composition Bundling Polar Localization and Surface Presentation of Peptides

机译:由II型Secreton形成的IV型菌毛:特异性组成捆绑极性定位和肽的表面呈递

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摘要

The secreton or type II secretion machinery of gram-negative bacteria includes several type IV pilin-like proteins (the pseudopilins) that are absolutely required for secretion. We previously reported the presence of a bundled pilus composed of the pseudopilin PulG on the surface of agar-grown Escherichia coli K-12 cells expressing the Klebsiella oxytoca pullulanase (Pul) secreton genes at high levels (N. Sauvonnet, G. Vignon, A. P. Pugsley, and P. Gounon, EMBO J. 19:2221-2228, 2000). We show here that PulG is the only pseudopilin in purified pili and that the phenomenon is not restricted to the Pul secreton reconstituted in E. coli or to PulG. For example, high-level expression of the endogenous E. coli gsp secreton genes caused production of bundled pili composed of the pseudopilin GspG, and the Pul secreton was able to form pili composed of PulG-like proteins from secreton systems of other bacteria. PulG derivatives in which the C terminus was extended by the addition of eight different peptides were also assembled into pili and functioned in secretion. Three of the C-terminal peptides were shown to be exposed along the entire length of the assembled pili. Hence, the C terminus of PulG may represent a permissive site for the insertion of immunogenic epitopes or other peptide sequences. One of these PulG variants, with a six-histidine tag at its C terminus, formed nonpolar, nonbundled pili, suggesting that bundle formation and polar localization are not correlated with the ability of PulG to function in secretion. We propose that the PulG pilus is an artifactual manifestation of a periplasmic “pseudopilus” and that cycles of pseudopilus extension and retraction within the periplasm propel pullulanase through secretin channels in the outer membrane. Abnormally long pili that extend beyond the outer membrane are produced only when pilus length control and retraction are deregulated by overproduction of the major pseudopilus subunit (PulG).
机译:革兰氏阴性细菌的促分泌素或II型分泌机制包括分泌所绝对需要的几种IV型菌毛蛋白样蛋白(假菌毛蛋白)。我们之前曾报道过在琼脂生长的大肠杆菌K-12细胞表面上存在由假菌毛蛋白PulG组成的捆绑菌毛,该菌表达高水平的产酸克雷伯菌支链淀粉酶(Pul)分泌蛋白基因(N.Sauvonnet,G.Vignon,AP Pugsley和P.Gounon,EMBO J. 19:2221-2228,2000)。我们在这里表明,PulG是纯化菌毛中唯一的假菌毛蛋白,这种现象不仅限于在大肠杆菌中重构的Pul分泌素或PulG。例如,内源性大肠杆菌gsp分泌蛋白基因的高水平表达引起由假菌毛蛋白GspG组成的捆绑菌毛的产生,而Pul分泌蛋白能够从其他细菌的分泌蛋白系统形成由PulG样蛋白组成的菌毛。通过添加八种不同的肽扩展了C末端的PulG衍生物也被组装成菌毛并在分泌中起作用。显示了三个C末端肽沿组装菌毛的整个长度暴露。因此,PulG的C末端可以代表用于插入免疫原性表位或其他肽序列的允许位点。这些PulG变体之一在其C末端带有一个六组氨酸标签,形成了非极性,非束缚菌毛,这表明束形成和极性定位与PulG分泌功能的能力无关。我们认为,PulG菌毛是周质“假菌毛”的人为表现,并且周质内的伪菌毛延伸和缩回周期通过外膜的促胰液素通道推进了支链淀粉酶。仅当主要假菌毛亚基(PulG)的过量产生解除了菌毛长度的控制和缩回时,才会产生超出外膜的异常长的菌毛。

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