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首页> 外文期刊>Applied and Environmental Microbiology >Protein-Mediated Adhesion of the Dissimilatory Fe(III)-Reducing Bacterium Shewanella alga BrY to Hydrous Ferric Oxide
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Protein-Mediated Adhesion of the Dissimilatory Fe(III)-Reducing Bacterium Shewanella alga BrY to Hydrous Ferric Oxide

机译:蛋白质介导的异化Fe(III)还原细菌希瓦氏菌藻BrY对含水氧化铁的粘附

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摘要

The rate and extent of bacterial Fe(III) mineral reduction are governed by molecular-scale interactions between the bacterial cell surface and the mineral surface. These interactions are poorly understood. This study examined the role of surface proteins in the adhesion of Shewanella alga BrY to hydrous ferric oxide (HFO). Enzymatic degradation of cell surface polysaccharides had no effect on cell adhesion to HFO. The proteolytic enzymesStreptomyces griseus protease and chymotrypsin inhibited the adhesion of S. alga BrY cells to HFO through catalytic degradation of surface proteins. Trypsin inhibited S. algaBrY adhesion solely through surface-coating effects. Protease and chymotrypsin also mediated desorption of adhered S. algaBrY cells from HFO while trypsin did not mediate cell desorption. Protease removed a single peptide band that represented a protein with an apparent molecular mass of 50 kDa. Chymotrypsin removed two peptide bands that represented proteins with apparent molecular masses of 60 and 31 kDa. These proteins represent putative HFO adhesion molecules.S. alga BrY adhesion was inhibited by up to 46% when cells were cultured at sub-MICs of chloramphenicol, suggesting that protein synthesis is necessary for adhesion. Proteins extracted from the surface of S. alga BrY cells inhibited adhesion to HFO by up to 41%. A number of these proteins bound specifically to HFO, suggesting that a complex system of surface proteins mediates S. alga BrY adhesion to HFO.
机译:细菌Fe(III)矿物质还原的速率和程度受细菌细胞表面和矿物质表面之间的分子尺度相互作用控制。这些相互作用了解甚少。这项研究检查了表面蛋白在Shewanella alga BrY对水合氧化铁(HFO)粘附中的作用。酶降解细胞表面多糖对细胞对HFO的粘附没有影响。蛋白水解酶灰链霉菌蛋白酶和胰凝乳蛋白酶通过表面蛋白的催化降解来抑制海藻链球菌BrY细胞对HFO的粘附。胰蛋白酶仅通过表面涂覆作用抑制S. algaBrY粘附。蛋白酶和胰凝乳蛋白酶也介导粘附的S.algaBrY细胞从HFO解吸,而胰蛋白酶不介导细胞解吸。蛋白酶去除了代表表观分子量为50 kDa的蛋白质的单个肽带。胰凝乳蛋白酶去除了两个肽带,它们代表了表观分子量分别为60和31 kDa的蛋白质。这些蛋白质代表推定的HFO粘附分子。当在氯霉素的亚MIC处培养细胞时,藻类BrY的粘附被抑制了高达46%,这表明蛋白质合成对于粘附是必需的。从海藻BrY细胞表面提取的蛋白质最多可抑制41%的HFO粘附。这些蛋白中的许多特异性地与HFO结合,表明表面蛋白的复杂系统介导了S. alga BrY对HFO的粘附。

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