Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka, Japan.
J Bacteriol. 2010 Apr;192(7):1929-36. doi: 10.1128/JB.01328-09. Epub 2010 Jan 29.
For construction of the bacterial flagellum, many of the flagellar proteins are exported into the central channel of the flagellar structure by the flagellar type III protein export apparatus. FlhA and FlhB, which are integral membrane proteins of the export apparatus, form a docking platform for the soluble components of the export apparatus, FliH, FliI, and FliJ. The C-terminal cytoplasmic domain of FlhA (FlhA(C)) is required for protein export, but it is not clear how it works. Here, we analyzed a temperature-sensitive Salmonella enterica mutant, the flhA(G368C) mutant, which has a mutation in the sequence encoding FlhA(C). The G368C mutation did not eliminate the interactions with FliH, FliI, FliJ, and the C-terminal cytoplasmic domain of FlhB, suggesting that the mutation blocks the export process after the FliH-FliI-FliJ-export substrate complex binds to the FlhA-FlhB platform. Limited proteolysis showed that FlhA(C) consists of at least three subdomains, a flexible linker, FlhA(CN), and FlhA(CC), and that FlhA(CN) becomes sensitive to proteolysis by the G368C mutation. Intragenic suppressor mutations were identified in these subdomains and restored flagellar protein export to a considerable degree. However, none of these suppressor mutations suppressed the protease sensitivity. We suggest that FlhA(C) not only forms part of the docking platform for the FliH-FliI-FliJ-export substrate complex but also is directly involved in the translocation of the export substrate into the central channel of the growing flagellar structure.
为了构建细菌鞭毛,许多鞭毛蛋白通过鞭毛 III 型蛋白输出装置被输出到鞭毛结构的中央通道中。FlhA 和 FlhB 是输出装置的整合膜蛋白,它们形成了可溶性输出装置成分(FliH、FliI 和 FliJ)的对接平台。FlhA 的 C 端细胞质结构域(FlhA(C)))对于蛋白质输出是必需的,但它的作用机制尚不清楚。在这里,我们分析了一个温度敏感的沙门氏菌突变体,即 flhA(G368C)突变体,该突变体在编码 FlhA(C)的序列中发生了突变。G368C 突变并没有消除与 FliH、FliI、FliJ 和 FlhB 的 C 端细胞质结构域的相互作用,这表明突变体在 FliH-FliI-FliJ-输出底物复合物结合到 FlhA-FlhB 平台后阻止了输出过程。有限的蛋白水解表明,FlhA(C)至少由三个亚结构域组成,一个柔性接头,FlhA(CN),和 FlhA(CC),并且 FlhA(CN)对 G368C 突变变得敏感。在这些亚结构域中鉴定了基因内抑制突变,这些突变在很大程度上恢复了鞭毛蛋白的输出。然而,这些抑制突变都没有抑制蛋白酶的敏感性。我们认为,FlhA(C)不仅构成了 FliH-FliI-FliJ-输出底物复合物的对接平台的一部分,而且直接参与了输出底物向生长中的鞭毛结构中央通道的易位。