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计算研究甲基汞-氨基酸配合物及其硒类似物的结构、电子、光谱和热力学性质。

Computational studies of structural, electronic, spectroscopic, and thermodynamic properties of methylmercury-amino acid complexes and their Se analogues.

机构信息

Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, Canada R3T 2N2.

出版信息

Inorg Chem. 2010 Feb 1;49(3):870-8. doi: 10.1021/ic900827m.

Abstract

Quantum chemical calculations have been carried out to study the structural, electronic, spectroscopic, and thermodynamic properties of five methylmercury-amino acid complexes and their selenium analogues. The structural properties of methylmercury-amino acids are very similar to their Se analogues except for those properties that are directly related to the Se atom which has a larger covalent radius. Characteristic stretching frequencies are observed for Hg-S/Se and Hg-C bonds. Electronic properties of both methylmercury-amino acids and their Se analogues are different from each other, with the S complexes showing stronger electrostatic attractions which leads to stronger bonds to mercury. The methylmercury complexes with selenoamino complexes, however, are thermodynamically more favorable (DeltaG of formation from suitable model reactants) than those of the corresponding amino acid complexes. This can be traced to the lower stability of the reactant selenoamino acids. Such different stability and favorability of formation might be responsible for the different physiological activity in biological systems such as the Hg-Se antagonism.

摘要

已进行量子化学计算,以研究五种甲基汞-氨基酸配合物及其硒类似物的结构、电子、光谱和热力学性质。甲基汞-氨基酸的结构性质与它们的硒类似物非常相似,除了那些与硒原子直接相关的性质,硒原子具有较大的共价半径。观察到 Hg-S/Se 和 Hg-C 键的特征伸缩频率。甲基汞-氨基酸及其硒类似物的电子性质彼此不同,S 配合物显示出更强的静电吸引力,从而导致与汞更强的键合。然而,与相应的氨基酸配合物相比,硒代氨基酸的甲基汞配合物在热力学上更有利(从合适的模型反应物形成的 DeltaG)。这可以追溯到反应物硒代氨基酸的较低稳定性。这种不同的稳定性和形成的有利性可能是导致生物系统中不同生理活性的原因,例如 Hg-Se 拮抗作用。

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