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玫瑰色假单胞菌的普通鞭毛和复合鞭毛:精细结构与组成分析

Plain and complex flagella of Pseudomonas rhodos: analysis of fine structure and composition.

作者信息

Schmitt R, Raska I, Mayer F

出版信息

J Bacteriol. 1974 Feb;117(2):844-57. doi: 10.1128/jb.117.2.844-857.1974.

Abstract

Cells of Pseudomonas rhodos 9-6 produce two morphologically distinct flagella termed plain and complex, respectively. Fine structure analyses by electron microscopy and optical diffraction showed that plain flagellar filaments are cylinders of 13-nm diameter composed of globular subunits like normal bacterial flagella. The structure comprises nine large-scale helical rows of subunits intersecting four small-scale helices of pitch angle 25 degrees . Complex filaments have a conspicuous helical sheath, 18-nm wide, of three close-fitting helical bands, each about 4.7-nm wide, separated by axial intervals, 4.7 nm wide, running at an angle of 27 degrees . The internal core has similar but not identical substructure to plain filaments. Unlike plain flagella, the complex species is fragile and does not aggregate in bundles. Mutants bearing only one of two types of flagellum were isolated. Cells with plain flagella showed normal translational motion, and cells with complex flagella showed rapid spinning. Isolated plain flagella consist of a 37,000-dalton subunit separable into two isoproteins. Complex filaments consist of a 55,000-dalton protein; a second 43,000-dalton protein was assigned to complex flagellar hooks. The results indicate that plain and complex flagella are entirely different in structure and composition and that the complex type represents a novel flagellar species. Its possible mode of action is discussed.

摘要

红假单胞菌9-6的细胞产生两种形态上截然不同的鞭毛,分别称为普通鞭毛和复合鞭毛。通过电子显微镜和光学衍射进行的精细结构分析表明,普通鞭毛丝是直径为13纳米的圆柱体,由类似于正常细菌鞭毛的球状亚基组成。该结构由九排大规模的亚基螺旋与四个螺距角为25度的小规模螺旋相交组成。复合鞭毛丝有一个明显的螺旋鞘,宽18纳米,由三条紧密贴合的螺旋带组成,每条带约4.7纳米宽,由4.7纳米宽的轴向间隔隔开,以27度角排列。内部核心具有与普通鞭毛丝相似但不完全相同的亚结构。与普通鞭毛不同,复合鞭毛很脆弱,不会聚集成束。分离出只带有两种鞭毛之一的突变体。具有普通鞭毛的细胞表现出正常的平移运动,而具有复合鞭毛的细胞表现出快速旋转。分离出的普通鞭毛由一个37,000道尔顿的亚基组成,可分为两种同功蛋白。复合鞭毛丝由一种55,000道尔顿的蛋白质组成;第二种43,000道尔顿的蛋白质被认为与复合鞭毛钩有关。结果表明,普通鞭毛和复合鞭毛在结构和组成上完全不同,复合鞭毛代表一种新型的鞭毛种类。文中讨论了其可能的作用方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/622c/285582/18c9c770929f/jbacter00575-0533-a.jpg

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