Raska I, Mayer F, Edelbluth C, Schmitt R
J Bacteriol. 1976 Feb;125(2):679-88. doi: 10.1128/jb.125.2.679-688.1976.
The proximal hooks of plain and complex flagella produced by a strain of Pseudomonas rhodos have been analyzed by electron microscopy and optical diffraction and filtering. Plain flagellar hooks are cone-shaped, 70 nm long, and 13 to 21.5 nm wide, and consist of helically arranged subunits. Complex flagellar hooks are cylinders, 180 to 190 nm long, and 15 to 16 nm wide, and are composed of globular subunits. The structure comprises four small-scale helical rows of subunits intersecting bewteen 10 and 11 large-scale helices of pitch angle 80 degrees. The axial and lateral dimensions of the unit cell, which define the surface lattice, are 4.9 and 4.7 nm, respectively. In addition, a core structure, approximately 5 nm wide, has been demonstrated inside the hook cylinder. Complex flagellar hooks were isolated and purified by gradient centrifugation after acid degradation of the attached filaments. Isolated hook particles have an average sedimentation constant of 130S and consist of a protein of molecular weight 43,000. A model of the complex flagellar hook is presented, and its possible role in flagellar assembly and rotation is discussed.
利用电子显微镜、光学衍射和滤波技术,对一株玫红假单胞菌产生的普通鞭毛和复合鞭毛的近端钩进行了分析。普通鞭毛钩呈锥形,长70纳米,宽13至21.5纳米,由螺旋排列的亚基组成。复合鞭毛钩呈圆柱形,长180至190纳米,宽15至16纳米,由球状亚基组成。该结构由四排小规模的亚基螺旋行组成,这些亚基螺旋行在10至11个螺距角为80度的大规模螺旋之间相交。定义表面晶格的晶胞的轴向和横向尺寸分别为4.9纳米和4.7纳米。此外,在钩状圆柱体内部已证实存在一个宽约5纳米的核心结构。在附着的细丝经酸降解后,通过梯度离心法分离并纯化了复合鞭毛钩。分离出的钩状颗粒的平均沉降常数为130S,由分子量为43,000的一种蛋白质组成。本文提出了复合鞭毛钩的模型,并讨论了其在鞭毛组装和旋转中的可能作用。