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锌(II)-甲巯咪唑配合物:合成与反应活性

Zinc(II)-methimazole complexes: synthesis and reactivity.

作者信息

Isaia Francesco, Aragoni Maria Carla, Arca Massimiliano, Bettoschi Alexandre, Caltagirone Claudia, Castellano Carlo, Demartin Francesco, Lippolis Vito, Pivetta Tiziana, Valletta Elisa

机构信息

Dipartimento di Scienze Chimiche e Geologiche, Università degli Studi di Cagliari, Cittadella Universitaria, 09042 Monserrato (CA), Italy.

出版信息

Dalton Trans. 2015 Jun 7;44(21):9805-14. doi: 10.1039/c5dt00917k.

Abstract

The tetrahedral S-coordinated complex Zn(MeImHS)42, synthesised from the reaction of [Zn(ClO4)2] with methimazole (1-methyl-3H-imidazole-2-thione, MeImHS), reacts with triethylamine to yield the homoleptic complex [Zn(MeImS)2] (MeImS = anion methimazole). ESI-MS and MAS (13)C-NMR experiments supported MeImS acting as a (N,S)-chelating ligand. The DFT-optimised structure of [Zn(MeImS)2] is also reported and the main bond lengths compared to those of related Zn-methimazole complexes. The complex [Zn(MeImS)2] reacts under mild conditions with methyl iodide and separates the novel complex [Zn(MeImSMe)2I2] (MeImSMe = S-methylmethimazole). X-ray diffraction analysis of the complex shows a ZnI2N2 core, with the methyl thioethers uncoordinated to zinc. Conversely, the reaction of [Zn(MeImS)2] with hydroiodic acid led to the formation of the complex [Zn(MeImHS)2I2] having a ZnI2S2 core with the neutral methimazole units S-coordinating the metal centre. The Zn-coordinated methimazole can markedly modify the coordination environment when changing from its thione to thionate form and vice versa. The study of the interaction of the drug methimazole with the complex Zn(MeIm)4 (MeIm = 1-methylimidazole) - as a model for Zn-enzymes containing a N4 donor set from histidine residues - shows that methimazole displaces only one of the coordinated MeIm molecules; the formation constant of the mixed complex Zn(MeIm)3(MeImHS) was determined.

摘要

由[Zn(ClO4)2]与甲巯咪唑(1-甲基-3H-咪唑-2-硫酮,MeImHS)反应合成的四面体S配位络合物Zn(MeImHS)42与三乙胺反应生成同配络合物[Zn(MeImS)2](MeImS = 甲巯咪唑阴离子)。电喷雾电离质谱(ESI-MS)和魔角旋转(MAS)(13)C-核磁共振实验支持MeImS作为一种(N,S)螯合配体。还报道了[Zn(MeImS)2]的密度泛函理论(DFT)优化结构,并将其主要键长与相关锌-甲巯咪唑络合物的键长进行了比较。络合物[Zn(MeImS)2]在温和条件下与碘甲烷反应,分离得到新型络合物[Zn(MeImSMe)2I2](MeImSMe = S-甲基甲巯咪唑)。该络合物的X射线衍射分析表明其核心为ZnI2N2,甲硫醚未与锌配位。相反,[Zn(MeImS)2]与氢碘酸反应生成了具有ZnI2S2核心的络合物[Zn(MeImHS)2I2],中性甲巯咪唑单元通过S与金属中心配位。当从硫酮形式转变为硫代酸盐形式或反之亦然时,与锌配位的甲巯咪唑可显著改变配位环境。对药物甲巯咪唑与络合物Zn(MeIm)4(MeIm = 1-甲基咪唑)相互作用的研究——作为含有来自组氨酸残基的N4供体集的锌酶的模型——表明甲巯咪唑仅取代了一个配位的MeIm分子;测定了混合络合物Zn(MeIm)3(MeImHS)的形成常数。

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