Carlsson Håkan, Haukka Matti, Nordlander Ebbe
Inorganic Chemistry, Kemicentrum, Lund University, Box 124, SE-221 00 Lund, Sweden.
Inorg Chem. 2004 Sep 6;43(18):5681-7. doi: 10.1021/ic0354522.
In an attempt to prepare structural and functional models for the active site of the hydrolytic enzyme zinc phosphotriesterase, five new zinc complexes of the ligands 2,6-bis[N-(N-(carboxylmethyl)-N-((1-methylimidazol)methyl)amine)methyl]-4-methylphenolate (BCIMP) and the corresponding asymmetric ligand 2-(N-isopropyl-N-((1-methylimidazolyl)methyl)aminomethyl)-6-(N-carboxylmethyl-N-((1-methylimidazolyl)methyl)aminomethyl)-4-methylphenol (ICIMP) have been synthesized, viz. Na[Zn(2)(BCIMP)Ac(2)] (1), [Zn(2)(BCIMP)(Ph(2)Ac)] (2), [Zn(2)(ICIMP)Ac(2)] (3), [Zn(4)(ICIMP)(2)(Me(3)Ac)(2)]ClO(4) (4), and [Zn(4)(ICIMP)(2)(Ph(2)Ac)(2)]ClO(4) (5). The X-ray structure of complex 5 has been determined and reveals that the complex is a dimer of dimers in the solid state, which in solution dissociates to potent structural models. Studies using NMR show that only one carboxylate coligand bridges the dizinc units in the case of diphenyl acetate and pivalate, while the steric bulk of acetate is sufficiently small to permit the coordination of two acetates/dizinc unit. Functional studies involving the hydrolysis/transesterification of 2-hydroxypropyl p-nitrophenyl phosphate (HPNP) show that the complex with ICIMP (compound 5) has a significantly higher rate of catalysis than the BCIMP complex (compound 2). This is attributed to the vacant/labile coordination site that is available in the ICIMP complex but not the BCIMP complex.
为了制备水解酶磷酸三酯酶活性位点的结构和功能模型,已合成了配体2,6-双[N-(N-(羧甲基)-N-((1-甲基咪唑)甲基)胺)甲基]-4-甲基苯酚盐(BCIMP)和相应的不对称配体2-(N-异丙基-N-((1-甲基咪唑基)甲基)氨基甲基)-6-(N-羧甲基-N-((1-甲基咪唑基)甲基)氨基甲基)-4-甲基苯酚(ICIMP)的五种新的锌配合物,即Na[Zn₂(BCIMP)Ac₂] (1)、[Zn₂(BCIMP)(Ph₂Ac)] (2)、[Zn₂(ICIMP)Ac₂] (3)、[Zn₄(ICIMP)₂(Me₃Ac)₂][ClO₄]₂ (4)和[Zn₄(ICIMP)₂(Ph₂Ac)₂][ClO₄]₂ (5)。已确定配合物-5的X射线结构,结果表明该配合物在固态下是二聚体的二聚体,在溶液中会解离为有效的结构模型。使用核磁共振的研究表明,在二苯基乙酸酯和新戊酸酯的情况下,只有一个羧酸根共配体桥接双锌单元,而乙酸酯的空间位阻足够小,允许两个乙酸酯/双锌单元配位。涉及对硝基苯基磷酸2-羟丙酯(HPNP)水解/酯交换的功能研究表明,与ICIMP的配合物(化合物5)的催化速率明显高于与BCIMP的配合物(化合物2)。这归因于ICIMP配合物中存在但BCIMP配合物中不存在的空的/不稳定配位位点。