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通过高压电子显微镜对钩端螺旋体科和伯氏疏螺旋体进行结构分析。

Structural analysis of the Leptospiraceae and Borrelia burgdorferi by high-voltage electron microscopy.

作者信息

Goldstein S F, Buttle K F, Charon N W

机构信息

Department of Genetics and Cell Biology, University of Minnesota, St. Paul 55108, USA.

出版信息

J Bacteriol. 1996 Nov;178(22):6539-45. doi: 10.1128/jb.178.22.6539-6545.1996.

Abstract

Spirochetes are an evolutionary and structurally unique group of bacteria. Outermost is a membrane sheath (OS), and within this sheath are the protoplasmic cell cylinder (PC) and periplasmic flagella (PFs). The PFs are attached at each end of the PC and, depending on the species, may or may not overlap in the center of the cell. The precise location of the PFs within the spirochetal cells is unknown. The PFs could lie along the cell axis. Alternatively, the PFs could wrap around the PC in either a right- or a left-handed sense. To understand the factors that cause the PFs to influence cell shape and allow the cells to swim, we determined the precise location of the PFs in the Leptospiraceae (Leptonema illini) and Borrelia burgdorferi. Our approach was to use high-voltage electron microscopy and analyze the three-dimensional images obtained from thick sections of embedded cells. We found that a single PF in L. illini is located in a central channel 29 nm in diameter running along the helix axis of the right-handed PC. The presence of the PFs is associated with the end being hook shaped. The results obtained agree with the current model of Leptospiraceae motility. In B. burgdorferi, which forms a flattened wave, the relationship between the PFs and the PC is more complicated. A multistrand ridge 67 nm in diameter, which was shown to be composed of PFs by cross-sectional and mutant analysis, was found to extend along the entire length of the cell. We found that the PFs wrapped around the PC in a right-handed sense. However, the PFs formed a left-handed helix in space. The wavelength of the cell body and the helix pitch of the PFs were found to be identical (2.83 microm). The results obtained were used to propose a model of B. burgdorferi motility whereby backward-propagating waves, which gyrate counterclockwise as viewed from the back of the cell, are generated by the counterclockwise rotation of the internal PFs. Concomitant with this motion, the cell is believed to rotate clockwise about the body axis as shown for the Leptospiraceae.

摘要

螺旋体是一类在进化和结构上独特的细菌。最外层是膜鞘(OS),在这个鞘内是原生质细胞圆柱体(PC)和周质鞭毛(PFs)。PFs附着在PC的两端,根据物种的不同,它们在细胞中心可能会重叠,也可能不会。PFs在螺旋体细胞内的确切位置尚不清楚。PFs可能沿着细胞轴排列。或者,PFs可能以右手或左手的方式缠绕在PC周围。为了了解导致PFs影响细胞形状并使细胞游动的因素,我们确定了钩端螺旋体科(伊利诺伊细螺旋体)和伯氏疏螺旋体中PFs的确切位置。我们的方法是使用高压电子显微镜并分析从包埋细胞的厚切片中获得的三维图像。我们发现,伊利诺伊细螺旋体中的单个PF位于一个直径为29纳米的中央通道中,该通道沿着右手螺旋PC的螺旋轴延伸。PFs的存在与细胞末端呈钩状有关。所得结果与目前钩端螺旋体科运动的模型一致。在形成扁平波的伯氏疏螺旋体中,PFs与PC之间的关系更为复杂。通过横截面和突变分析表明,一个直径为67纳米的多股脊由PFs组成,它沿着细胞的整个长度延伸。我们发现PFs以右手方式缠绕在PC周围。然而,PFs在空间中形成了左手螺旋。发现细胞体的波长和PFs的螺旋螺距是相同的(2.83微米)。所得结果被用于提出一个伯氏疏螺旋体运动的模型,即从细胞背面看逆时针旋转的内部PFs产生向后传播的波,这些波逆时针旋转。伴随着这种运动,细胞被认为像钩端螺旋体科那样围绕身体轴顺时针旋转。

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本文引用的文献

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J Bacteriol. 1980 Jan;141(1):359-64. doi: 10.1128/jb.141.1.359-364.1980.
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Electron microscopy of Leptospira. 1. Leptospira strain Pomona.钩端螺旋体的电子显微镜观察。1. 波摩那群钩端螺旋体菌株。
Acta Pathol Microbiol Scand B Microbiol Immunol. 1973 Dec;81(6):665-76. doi: 10.1111/j.1699-0463.1973.tb02258.x.

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