Rüssmann Holger, Kubori Tomoko, Sauer Jeannette, Galán Jorge E
Max von Pettenkofer-Institute for Hygiene and Medical Microbiology, Ludwig Maximilians University Munich, 80336 München, Germany.
Mol Microbiol. 2002 Nov;46(3):769-79. doi: 10.1046/j.1365-2958.2002.03196.x.
Central to the pathogenicity of Salmonella enterica is the function of a type III secretion system (TTSS) encoded within a pathogenicity island at centisome 63 (SPI-1). An essential component of this system is a supramolecular structure termed the needle complex. Proteins to be delivered into host cells possess specific signals that route them to the type III secretion pathway. In addition, some bacterial proteins have signals that deliver them to the secretion complex to either become their structural components or exert their function at that location. One of these proteins is InvJ, which controls the length of the needle substructure of the needle complex. In this study, we have analysed the signal that targets InvJ to the TTSS. We found that amino acid residues 4 to 7 of InvJ are necessary and sufficient to mediate secretion of InvJ or a reporter protein in a TTSS-dependent manner. InvJ secretion was found to be essential for its function in needle length determination, effector protein secretion and bacterial invasion of epithelial cells. Frameshift mutagenesis analysis indicated that the InvJ type III secretion signal sequence tolerates significant alterations in its amino acid sequence without affecting InvJ secretion. Introduction of silent mutations in the secretion signal coding sequence that result in drastically different predicted mRNA folds had no effect on InvJ secretion or expression.
肠炎沙门氏菌致病性的核心是位于63分位致病岛(SPI-1)内编码的III型分泌系统(TTSS)的功能。该系统的一个重要组成部分是一种称为针状复合体的超分子结构。要输送到宿主细胞中的蛋白质具有将它们导向III型分泌途径的特定信号。此外,一些细菌蛋白具有将它们输送到分泌复合体的信号,使其成为其结构成分或在该位置发挥功能。其中一种蛋白质是InvJ,它控制针状复合体针状亚结构的长度。在本研究中,我们分析了将InvJ靶向TTSS的信号。我们发现InvJ的第4至7个氨基酸残基对于以TTSS依赖的方式介导InvJ或报告蛋白的分泌是必要且充分的。发现InvJ分泌对于其在针长度确定、效应蛋白分泌和细菌侵袭上皮细胞中的功能至关重要。移码诱变分析表明,InvJ III型分泌信号序列在其氨基酸序列中可耐受显著改变而不影响InvJ分泌。在分泌信号编码序列中引入导致预测的mRNA折叠显著不同的沉默突变对InvJ分泌或表达没有影响。