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蜿蜒螺菌外部结构层的亚结构及体外组装

Substructure and in vitro assembly of the outer, structured layer of Spirillum serpens.

作者信息

Buckmire F L, Murray R G

出版信息

J Bacteriol. 1976 Jan;125(1):290-9. doi: 10.1128/jb.125.1.290-299.1976.

Abstract

Electron micrographs of disintegrating units of the outer, structured (HP) layer of Spirillum serpens and of the isolated protein obtained from the HP layer revealed V- and Y-shaped and linear profiles. Interpretation of these forms, influenced by the seemingly trimeric form of the isolated protein and by biochemical data, suggested that the protein subunits were identical and Y shaped. A model is proposed for the assembly of the Y-shaped subunits to form a hexagon composed of two triads (three Y-shaped subunits each). The isolated protein adsorbed to a template of wall fragments (basal layer) to the same degree (over 90%) in high concentrations of Na+, K+ (5 X 10(-2) M), Ca2+, Sr2+, and Mg2+ (10(-2) M). At a lower concentration (4 x 10(-5) M) of the cations there was differential adsorption of the protein. Adsorption to the template in the presence of each cation, followed by dilution, also led to differential release of the protein. The adsorption of the protein to the basal layer was correlated with reassembly of the HP layer on the template. The mechanisms seem to be: (i) an ionic strength-dependent reassembly, which results in an HP layer loosely attached to the template (this layer is easily dissociated by decreasing the ionic strength); and (ii) a cation-specific (Ca2+ or Sr2+, but not Mg2+, Na+, or K+) mechanism independent of ionic strength. In this latter case, the specific cations presumably form strong noncovalent "salt" linkages between triads and the basal layer, enabling stable hexagons and the HP layer to be formed.

摘要

对蜿蜒螺菌外部结构化(HP)层解体单元以及从HP层分离得到的蛋白质进行电子显微镜观察,发现了V形、Y形和线性轮廓。受分离出的蛋白质看似三聚体形式以及生化数据的影响,对这些形态的解读表明蛋白质亚基是相同的且呈Y形。提出了一个Y形亚基组装形成由两个三联体(每个三联体由三个Y形亚基组成)构成的六边形的模型。在高浓度的Na⁺、K⁺(5×10⁻² M)、Ca²⁺、Sr²⁺和Mg²⁺(10⁻² M)中,分离出的蛋白质以相同程度(超过90%)吸附到壁片段(基底层)模板上。在较低浓度(4×10⁻⁵ M)的阳离子存在下,蛋白质存在差异吸附。在每种阳离子存在下吸附到模板上,随后进行稀释,也会导致蛋白质的差异释放。蛋白质吸附到基底层与HP层在模板上的重新组装相关。其机制似乎是:(i)一种依赖离子强度的重新组装,导致HP层松散地附着在模板上(通过降低离子强度,该层很容易解离);以及(ii)一种独立于离子强度的阳离子特异性(Ca²⁺或Sr²⁺,但不是Mg²⁺、Na⁺或K⁺)机制。在后一种情况下,特定的阳离子大概在三联体和基底层之间形成强的非共价“盐”键,从而能够形成稳定的六边形和HP层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1630/233362/52fbc1cac033/jbacter00320-0306-a.jpg

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