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细菌鞭毛丝在11埃分辨率下的结构:α-螺旋的堆积

Structure of bacterial flagellar filaments at 11 A resolution: packing of the alpha-helices.

作者信息

Morgan D G, Owen C, Melanson L A, DeRosier D J

机构信息

Rosensteil Basic Medical Sciences Research Center, Brandeis University, Waltham, MA 02254, USA.

出版信息

J Mol Biol. 1995 May 26;249(1):88-110. doi: 10.1006/jmbi.1995.0282.

Abstract

Recent advances in the analysis of electron micrographs of frozen, hydrated bacterial filaments have allowed us to average data from more than 150 images and to reconstruct the bacterial flagellar filament of Salmonella typhimurium at a resolution of approximately 11 A. In addition to the outermost features seen in earlier lower resolution maps of the filament, we find a pair of concentric tubes which surround a approximately A diameter channel at the center of the structure. The walls of these tubes are composed of rod-like features which we have interpreted as columns of individual alpha-helices stacked end-to-end. Each column runs approximately parallel to the helix axis. The wall of the innermost tube, at a radius of approximately 20 A, is formed from 11 such columns. The wall of the second tube is formed from 22 columns which occur alternately at radii of approximately 43 and approximately 47 A. The two concentric tubes are held apart by spacers. These are short, rod-like features, which run approximately parallel to the helix axis. We have interpreted these as additional alpha-helices. By symmetry, each flagellin monomer contributes an alpha-helix to the inner tube, two alpha-helices to the outer tube and a fourth alpha-helix to the spacer. We have tentatively assigned one type of alpha-helix in the outer tube to the approximately 30 C-terminal residues of flagellin while the remaining three alpha-helices are assigned to the approximately 70 N-terminal residues. This interpretation of the reconstruction is consistent with available biochemical, biophysical and amino acid sequence information. We also present details of improved methodology to extract and evaluate the original data and also to assess the statistical significance of features in the three-dimensional map.

摘要

冷冻水合细菌丝电子显微照片分析方面的最新进展,使我们能够对150多张图像的数据进行平均处理,并以约11埃的分辨率重建鼠伤寒沙门氏菌的细菌鞭毛丝。除了在早期较低分辨率的鞭毛丝图谱中看到的最外层特征外,我们还发现了一对同心管,它们围绕着结构中心一个直径约为埃的通道。这些管的壁由杆状特征组成,我们将其解释为单个α螺旋首尾相连堆叠而成的柱体。每个柱体大致平行于螺旋轴。最内层管的壁,半径约为20埃,由11个这样的柱体形成。第二层管的壁由22个柱体形成,它们交替出现在半径约为43埃和约47埃处。这两个同心管由间隔物隔开。这些间隔物是短的杆状特征,大致平行于螺旋轴。我们将其解释为额外的α螺旋。根据对称性,每个鞭毛蛋白单体为内层管贡献一个α螺旋,为外层管贡献两个α螺旋,为间隔物贡献第四个α螺旋。我们初步将外层管中的一种α螺旋类型分配给鞭毛蛋白的约30个C末端残基,而其余三个α螺旋分配给约70个N末端残基。这种对重建结果的解释与现有的生化、生物物理和氨基酸序列信息一致。我们还详细介绍了改进的方法,用于提取和评估原始数据,以及评估三维图谱中特征的统计显著性。

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