首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >High- and low-affinity binding sites for Cd on the bacterial cell walls of Bacillus subtilis and Shewanella oneidensis
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High- and low-affinity binding sites for Cd on the bacterial cell walls of Bacillus subtilis and Shewanella oneidensis

机译:枯草芽孢杆菌和沙瓦氏假单胞菌细菌细胞壁上镉的高和低亲和力结合位点

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Bulk Cd adsorption isotherm experiments, thermodynamic equilibrium modeling, and Cd K edge EXAFS were used to constrain the mechanisms of proton and Cd adsorption to bacterial cells of the commonly occurring Gram-positive and Gram-negative bacteria, Bacillus subtilis and Shewanella oneidensis, respectively. Potentiometric titrations were used to characterize the functional group reactivity of the S. oneidensis cells, and we model the titration data using the same type of non-electrostatic surface complexation approach as was applied to titrations of B. subtilis suspensions by Fein et al. (2005). Similar to the results for B. subtilis, the S. oneidensis cells exhibit buffering behavior from approximately pH 3-9 that requires the presence of four distinct sites, with pK_a values of 3.3±0.2, 4.8±0.2, 6.7±0.4, and 9.4±0.5, and site concentrations of 8.9(±2.6)×10~(-5), 1.3(±0.2)×10~(-4), 5.9(±3.3)×10~(-5), and 1.1(±0.6)×10~(-4) moles/g bacteria (wet mass), respectively. The bulk Cd isotherm adsorption data for both species, conducted at pH 5.9 as a function of Cd concentration at a fixed biomass concentration, were best modeled by reactions with a Cd:site stoichiometry of 1:1. EXAFS data were collected for both bacterial species as a function of Cd concentration at pH 5.9 and 10g/L bacteria. The EXAFS results show that the same types of binding sites are responsible for Cd sorption to both bacterial species at all Cd loadings tested (1-200ppm). Carboxyl sites are responsible for the binding at intermediate Cd loadings. Phosphoryl ligands are more important than carboxyl ligands for Cd binding at high Cd loadings. For the lowest Cd loadings studied here, a sulfhydryl site was found to dominate the bound Cd budgets for both species, in addition to the carboxyl and phosphoryl sites that dominate the higher loadings. The EXAFS results suggest that both Gram-positive and Gram-negative bacterial cell walls have a low concentration of very high-affinity sulfhydryl sites which become masked by the more abundant carboxyl and phosphoryl sites at higher metal:bacteria ratios. This study demonstrates that metal loading plays a vital role in determining the important metal-binding reactions that occur on bacterial cell walls, and that high affinity, low-density sites can be revealed by spectroscopy of biomass samples. Such sites may control the fate and transport of metals in realistic geologic settings, where metal concentrations are low.
机译:大量Cd吸附等温线实验,热力学平衡模型和Cd K边缘EXAFS被用于分别限制质子和Cd吸附到常见革兰氏阳性和革兰氏阴性细菌,枯草芽孢杆菌和Shewanella oneidensis的细菌细胞中的机制。电位滴定法用来表征oneidensis细胞的官能团反应性,并且我们使用与Fein等人用于枯草芽孢杆菌悬浮液滴定的相同类型的非静电表面络合方法对滴定数据进行建模。 (2005)。与枯草芽孢杆菌的结果相似,oneidensis细胞表现出大约3-9的pH缓冲性能,需要存在四个不同的位点,pK_a值分别为3.3±0.2、4.8±0.2、6.7±0.4和9.4。 ±0.5,部位浓度分别为8.9(±2.6)×10〜(-5),1.3(±0.2)×10〜(-4),5.9(±3.3)×10〜(-5)和1.1(±细菌(湿质量)分别为0.6)×10〜(-4)摩尔/ g细菌。在固定的生物质浓度下,在pH 5.9下随Cd浓度变化而进行的两种物质的总体Cd等温线吸附数据最好通过Cd:位点化学计量比为1:1的反应进行建模。收集两种细菌的​​EXAFS数据作为pH 5.9和10g / L细菌下Cd浓度的函数。 EXAFS结果表明,在所有测试的Cd负载(1-200ppm)下,相同类型的结合位点可导致Cd吸附到两种细菌上。羧基位点负责在中等Cd负载下的结合。对于高Cd负载下的Cd结合,磷酰基配体比羧基配体更重要。对于此处研究的最低Cd负载量,发现巯基位点在两个物种的结合Cd预算中占主导地位,而羧基和磷酰基位点则占较高的负载量。 EXAFS结果表明,革兰氏阳性和革兰氏阴性细菌细胞壁均具有低浓度的非常高亲和力的巯基位点,这些位点被较高的金属:细菌比例下更丰富的羧基和磷酰基位点所掩盖。这项研究表明,金属负载量在确定细菌细胞壁上发生的重要金属结合反应中起着至关重要的作用,而高亲和力,低密度位点可以通过生物质样品的光谱揭示。在金属浓度低的现实地质环境中,此类场所可能会控制金属的命运和运输。

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