Minamino T, Doi H, Kutsukake K
Faculty of Applied Biological Science, Hiroshima University, Japan.
Biosci Biotechnol Biochem. 1999 Jul;63(7):1301-3. doi: 10.1271/bbb.63.1301.
During flagellar morphogenesis in Salmonella typhimurium, the flagellum-specific anti-sigma factor FlgM is exported out of the cells only after completion of hook assembly. In this study, we examined the export of the flagellar proteins, FlgD (hook capping protein), FlgE (hook protein), FlgK and FlgL (hook-filament junction proteins), FliD (filament capping protein), and FliC (flagellin), before and after completion of hook assembly. Like the FlgM protein, the FlgK, FlgL, FliD, and FliC proteins are exported efficiently only after completion of hook assembly. On the other hand, the FlgD and FlgE proteins are exported efficiently before, but poorly after, hook completion. These results indicate that the export properties are different between these two groups and that their export order exactly parallels the assembly order of the hook-filament structure. We propose that the substrate specificity switching occurs in the flagellum-specific export apparatus upon completion of hook assembly.
在鼠伤寒沙门氏菌鞭毛形态发生过程中,鞭毛特异性抗σ因子FlgM仅在钩形结构组装完成后才被输出到细胞外。在本研究中,我们检测了鞭毛蛋白FlgD(钩形结构帽蛋白)、FlgE(钩形结构蛋白)、FlgK和FlgL(钩形结构-丝状体连接蛋白)、FliD(丝状体帽蛋白)以及FliC(鞭毛蛋白)在钩形结构组装完成前后的输出情况。与FlgM蛋白一样,FlgK、FlgL、FliD和FliC蛋白仅在钩形结构组装完成后才能高效输出。另一方面,FlgD和FlgE蛋白在钩形结构组装完成前能高效输出,但在组装完成后输出效率很低。这些结果表明这两组蛋白的输出特性不同,且它们的输出顺序与钩形结构-丝状体结构的组装顺序完全一致。我们提出,在钩形结构组装完成后,鞭毛特异性输出装置会发生底物特异性转换。