首页> 外文期刊>The Journal of biological chemistry >The 1.9 ? crystal structure of the extracellular matrix protein Bap1 from Vibrio cholerae provides insights into bacterial biofilm adhesion
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The 1.9 ? crystal structure of the extracellular matrix protein Bap1 from Vibrio cholerae provides insights into bacterial biofilm adhesion

机译:1.9?霍乱弧菌细胞外基质蛋白Bap1的晶体结构提供了细菌生物膜粘附的见解

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Growth of the cholera bacterium Vibrio cholerae in a biofilm community contributes to both its pathogenicity and survival in aquatic environmental niches. The major components of V. cholerae biofilms include Vibrio polysaccharide (VPS) and the extracellular matrix proteins RbmA, RbmC, and Bap1. To further elucidate the previously observed overlapping roles of Bap1 and RbmC in biofilm architecture and surface attachment, here we investigated the structural and functional properties of Bap1. Soluble expression of Bap1 was possible only after the removal of an internal 57-amino-acid-long hydrophobic insertion sequence. The crystal structure of Bap1 at 1.9 ? resolution revealed a two-domain assembly made up of an eight-bladed β-propeller interrupted by a β-prism domain. The structure also revealed metal-binding sites within canonical calcium blade motifs, which appear to have structural rather than functional roles. Contrary to results previously observed with RbmC, the Bap1 β-prism domain did not exhibit affinity for complex N-glycans, suggesting an altered role of this domain in biofilm-surface adhesion. Native polyacrylamide gel shift analysis did suggest that Bap1 exhibits lectin activity with a preference for anionic or linear polysaccharides. Our results suggest a model for V. cholerae biofilms in which Bap1 and RbmC play dominant but differing adhesive roles in biofilms, allowing bacterial attachment to diverse environmental or host surfaces.
机译:霍乱弧菌霍乱弧菌在生物膜群落中的生长有助于其致病性和在水生环境中的生存。霍乱弧菌生物膜的主要成分包括弧菌多糖(VPS)和细胞外基质蛋白RbmA,RbmC和Bap1。为了进一步阐明以前观察到的Bap1和RbmC在生物膜结构和表面附着中的重叠作用,在这里我们研究了Bap1的结构和功能特性。仅在去除内部57个氨基酸长的疏水性插入序列后才可能可溶性表达Bap1。 Bap1的晶体结构为1.9?解析度揭示了一个由八叶形β螺旋桨和一个β棱镜域隔开的两域组件。该结构还揭示了规范性钙刀片基序内的金属结合位点,似乎具有结构作用而非功能作用。与以前用RbmC观察到的结果相反,Bap1β-棱镜结构域对复合N-聚糖没有亲和力,表明该结构域在生物膜表面粘附中的作用发生了改变。天然聚丙烯酰胺凝胶位移分析确实表明,Bap1具有凝集素活性,偏爱阴离子或线性多糖。我们的结果提出了一种霍乱弧菌生物膜模型,其中Bap1和RbmC在生物膜中起主要作用,但具有不同的黏附作用,从而使细菌附着于各种环境或宿主表面。

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