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Synthesis X-ray structure in silico calculation and carbonic anhydrase inhibitory properties of benzylimidazole metal complexes

机译:苄基咪唑金属配合物的合成X射线结构计算机计算和碳酸酐酶抑制特性

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摘要

Three coordination compounds of formula {M(bmim)2Cl2} were synthetised (M = Co, Zn, and Hg) and fully characterised. Each complex incorporates 1-benzyl-2-methylimidazole (bmim) as ligand. The coordination polyhedron around the metal center for all complexes has a quasi-regular tetragonal geometry. Density functional theory calculations were carried out on the title compounds and as well on hypothetical complexes (Cu, Ni), in order to elucidate their electronic and molecular structure. The calculations reproduced the Co, Zn, and Hg experimental structures and could predict stable complexes in the case of Ni(II) and Cu(II) ions. The carbonic anhydrase (CA, EC 4.2.1.1) inhibitory effects of the three complexes were investigated. Only compound {Hg(bmim)2Cl2} (>3) exhibited a modest inhibitory effect against hCA I, probably due to the affinity of Hg(II) for His residues at the entrance of the active site cavity.
机译:合成了三种化学式为{M(bmim)2Cl2}的配位化合物(M = Co,Zn和Hg)并充分表征。每个复合物都包含1-苄基-2-甲基咪唑(bmim)作为配体。所有配合物在金属中心周围的配位多面体具有准规则的四边形几何形状。为了阐明其电子和分子结构,对标题化合物以及假设的络合物(铜,镍)进行了密度泛函理论计算。计算结果重现了Co,Zn和Hg的实验结构,并且在Ni(II)和Cu(II)离子的情况下可以预测稳定的络合物。研究了三种复合物的碳酸酐酶(CA,EC 4.2.1.1)抑制作用。只有化合物{Hg(bmim)2Cl2}(> 3 )对hCA I表现出适度的抑制作用,这可能是由于Hg(II)对活性位点腔入口处His残基的亲和力所致。

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