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首页> 外文期刊>Biomacromolecules >Spectroscopic Characterization of Extracellular Polymeric Substances from Escherichia coli and Serratia marcescens: Suppression Using Sub-Inhibitory Concentrations of Bismuth Thiols
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Spectroscopic Characterization of Extracellular Polymeric Substances from Escherichia coli and Serratia marcescens: Suppression Using Sub-Inhibitory Concentrations of Bismuth Thiols

机译:大肠杆菌和粘质沙雷氏菌胞外聚合物的光谱表征:使用亚抑制浓度的铋硫醇进行抑制

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Free and bound (or capsular) EPS produced by suspended cultures of Escherichia coli and Serratia marcescens were characterized in detail using colorimetric analysis of total proteins and polysaccharides, Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and Auger electron spectroscopy (AES) in the presence and absence of bismuth-based antifouling agents. Subtle differences in the chemical composition of free and bound EPS were observed for both bacteria in the absence of bismuth. Total polysaccharides and proteins in free and bound EPS decreased upon treatment with subinhibitory concentrations of lipophilic bismuth thiols (bismuth dimercaptopropanol, BisBAL; bismuth ethanedithiol, BisEDT; and bismuth pyrithione, BisPYR), with BisBAL being most effective. Bismuth thiols also influenced acetylation and carboxylation of polysaccharides in EPS from S. marcescens. Extensive homology between EPS samples in the presence and absence of bismuth was observed with proteins, polysaccharides, and nucleic acids varying predominantly only in the total amount produced. Second derivative analysis of the amide I region of FTIR spectra revealed decreases in protein secondary structures in the presence of bismuth thiols. Hence, antifouling properties of bismuth thiols appear to originate in their ability to suppress O-acetylation and protein secondary structure formation in addition to free and bound EPS secretion.
机译:使用总蛋白和多糖的比色分析,傅立叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和俄歇(Auger)比色法详细描述了由大肠杆菌和粘质沙雷氏菌悬浮培养产生的游离和结合(或荚膜)EPS。铋基防污剂存在和不存在下的电子光谱学(AES)。在没有铋的情况下,两种细菌的​​游离和结合的EPS的化学组成都有细微的差异。在亚抑制浓度的亲脂性铋硫醇(铋二巯基丙醇,BisBAL;乙二硫醇铋,BisEDT;和吡啶硫酮铋,BisPYR)处理后,游离和结合的EPS中的总多糖和蛋白质减少,其中BisBAL最有效。铋硫醇还影响了苦丁酵母中EPS中多糖的乙酰化和羧化。观察到存在和不存在铋的EPS样品之间的广泛同源性,其中蛋白质,多糖和核酸的变化主要是在产生的总量上主要不同。 FTIR光谱的酰胺I区的二阶导数分析显示,在铋硫醇存在下,蛋白质二级结构的减少。因此,除了自由和结合的EPS分泌外,铋硫醇的防污特性似乎还来自其抑制O-乙酰化和蛋白质二级结构形成的能力。

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