Avery S V, Tobin J M
School of Biological Sciences, Dublin City University, Ireland.
Appl Environ Microbiol. 1993 Sep;59(9):2851-6. doi: 10.1128/aem.59.9.2851-2856.1993.
The applicability of the hard-and-soft principle of acids and bases in predicting metal adsorption characteristics in a biological context was investigated for metabolism-independent uptake of the metal ions Sr2+, Mn2+, Zn2+, Cu2+, Cd2+, and Tl+ by Saccharomyces cerevisiae. Metal adsorption increased with external metal concentration (5 to 50 microM), although some saturation of uptake of the harder ions examined, Sr2+, Mn2+, and Zn2+, was evident at the higher metal concentrations. Cation displacement experiments indicated that, with the exception of Tl+, relative covalent bonding (H+ displacement) of the metals was greater at low metal concentrations, while weaker electrostatic interactions (Mg2+ plus Ca2+ displacement) became increasingly important at higher concentrations. These results were correlated with curved Scatchard and reciprocal Langmuir plots of metal uptake data. Saturation of covalent binding sites was most marked for the hard metals, and consequently, although no relationship between metal hardness and ionic/covalent bonding ratios was evident at 10 microM metal, at 50 microM the ratio was generally higher for harder metals. Increasing inhibition of metal uptake at increasing external anion concentrations was partially attributed to the formation of metal-anion complexes. Inhibitory effects of the hard anion SO42(-) were most marked for uptake of the hard metals Sr2+ and Mn2+, whereas greater relative effects on adsorption of the softer cations Cu2+ and Cd2+ were correlated with complexation by the soft anion S2O32(-). Inhibition of uptake of the borderline metal Zn2+ by SO42(-) and that by S2O32(-) were approximately equal.(ABSTRACT TRUNCATED AT 250 WORDS)
研究了酸碱硬软原理在预测生物环境中金属吸附特性方面的适用性,该研究针对酿酒酵母对金属离子Sr2+、Mn2+、Zn2+、Cu2+、Cd2+和Tl+的非代谢性摄取。金属吸附量随外部金属浓度(5至50微摩尔)增加,不过在所研究的较硬离子Sr2+、Mn2+和Zn2+中,在较高金属浓度下摄取出现了一些饱和现象。阳离子置换实验表明,除Tl+外,金属的相对共价键合(H+置换)在低金属浓度时更强,而较弱的静电相互作用(Mg2+加Ca2+置换)在较高浓度时变得越来越重要。这些结果与金属摄取数据的曲线Scatchard图和倒数Langmuir图相关。共价结合位点的饱和在硬金属中最为明显,因此,尽管在10微摩尔金属浓度下金属硬度与离子/共价键合比之间没有明显关系,但在50微摩尔时,较硬金属的该比值通常更高。外部阴离子浓度增加时对金属摄取的抑制作用增强,部分原因是形成了金属 - 阴离子络合物。硬阴离子SO42(-)对硬金属Sr2+和Mn2+摄取的抑制作用最为明显,而软阴离子S2O32(-)对较软阳离子Cu2+和Cd2+吸附的相对影响更大。SO42(-)和S2O32(-)对边界金属Zn2+摄取的抑制作用大致相等。(摘要截取自250字)