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分析口腔病原体福赛斯坦纳菌的细胞表面层超微结构。

Analysis of the cell surface layer ultrastructure of the oral pathogen Tannerella forsythia.

机构信息

Department of NanoBiotechnology, Vienna Institute of BioTechnology, Universität für Bodenkultur Wien, Muthgasse 11, 1190 Wien, Austria.

出版信息

Arch Microbiol. 2012 Jun;194(6):525-39. doi: 10.1007/s00203-012-0792-3. Epub 2012 Jan 25.

Abstract

The Gram-negative oral pathogen Tannerella forsythia is decorated with a 2D crystalline surface (S-) layer, with two different S-layer glycoprotein species being present. Prompted by the predicted virulence potential of the S-layer, this study focused on the analysis of the arrangement of the individual S-layer glycoproteins by a combination of microscopic, genetic, and biochemical analyses. The two S-layer genes are transcribed into mRNA and expressed into protein in equal amounts. The S-layer was investigated on intact bacterial cells by transmission electron microscopy, by immune fluorescence microscopy, and by atomic force microscopy. The analyses of wild-type cells revealed a distinct square S-layer lattice with an overall lattice constant of 10.1 ± 0.7 nm. In contrast, a blurred lattice with a lattice constant of 9.0 nm was found on S-layer single-mutant cells. This together with in vitro self-assembly studies using purified (glyco)protein species indicated their increased structural flexibility after self-assembly and/or impaired self-assembly capability. In conjunction with TEM analyses of thin-sectioned cells, this study demonstrates the unusual case that two S-layer glycoproteins are co-assembled into a single S-layer. Additionally, flagella and pilus-like structures were observed on T. forsythia cells, which might impact the pathogenicity of this bacterium.

摘要

革兰氏阴性口腔病原体福赛斯坦纳菌(Tannerella forsythia)表面覆盖着二维结晶表面(S-)层,存在两种不同的 S-层糖蛋白。鉴于 S-层的潜在毒力,本研究通过微观、遗传和生化分析相结合,重点分析了单个 S-层糖蛋白的排列。两种 S-层基因都转录成 mRNA,并等量表达为蛋白质。通过透射电子显微镜、免疫荧光显微镜和原子力显微镜对完整细菌细胞中的 S-层进行了研究。对野生型细胞的分析显示,S-层具有明显的正方形晶格,总晶格常数为 10.1 ± 0.7nm。相比之下,S-层单突变细胞上的晶格则呈现出模糊的晶格,晶格常数为 9.0nm。这与使用纯化的(糖)蛋白进行的体外自组装研究表明,这些蛋白在自组装后具有更高的结构灵活性和/或自组装能力受损。结合对薄切片细胞的 TEM 分析,本研究证明了两种 S-层糖蛋白共同组装成单个 S-层的特殊情况。此外,还观察到福赛斯坦纳菌细胞上存在鞭毛和类似菌毛的结构,这可能会影响该细菌的致病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249d/3354324/b9c9271fd7ae/203_2012_792_Fig1_HTML.jpg

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