Hirano T, Yamaguchi S, Oosawa K, Aizawa S
Department of Biosciences, Teikyo University, Utsunomiya, Japan.
J Bacteriol. 1994 Sep;176(17):5439-49. doi: 10.1128/jb.176.17.5439-5449.1994.
The length of flagellar hooks isolated from wild-type and mutant cells with various hook lengths were measured on electron micrographs. The length of the wild-type hook showed a narrow distribution with a peak (+/- standard deviation) at 55.0 +/- 5.9 nm, whereas fliK mutants (so-called polyhook mutants) showed a broad distribution of hook lengths ranging from 40 to 900 nm, strongly indicating that FliK is involved in hook length determination. Among pseudorevertants isolated from such polyhook mutants, fliK intragenic suppressors gave rise to polyhook filaments. However, intergenic suppressors mapping to flhB also gave rise to hooks of abnormal length, albeit they were much shorter than polyhooks. Furthermore, double mutations of flhB and flgK (the structural gene for hook-associated protein 1; HAP1) resulted in polyhooks, suggesting another way in which hook length can be affected. The roles of FliK, FlhB, and HAP1 in hook length determination are discussed.
在电子显微镜照片上测量了从具有不同钩长度的野生型和突变体细胞中分离出的鞭毛钩的长度。野生型钩的长度呈现出狭窄的分布,峰值(±标准差)在55.0±5.9nm,而fliK突变体(所谓的多钩突变体)显示钩长度的分布很广,范围从40到900nm,这有力地表明FliK参与钩长度的确定。在从此类多钩突变体中分离出的假回复体中,fliK基因内抑制子产生了多钩丝。然而,定位到flhB的基因间抑制子也产生了长度异常的钩,尽管它们比多钩短得多。此外,flhB和flgK(钩相关蛋白1;HAP1的结构基因)的双突变导致了多钩,这表明了另一种影响钩长度的方式。讨论了FliK、FlhB和HAP1在钩长度确定中的作用。