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碳酸酐酶模型化合物的合成、表征及其催化性能研究
引用本文:郭胜利,李贤均,夏春谷,殷元骐.碳酸酐酶模型化合物的合成、表征及其催化性能研究[J].化学学报,1999,57(3):289-297.
作者姓名:郭胜利  李贤均  夏春谷  殷元骐
作者单位:四川大学化学系.成都(610064);中国科学院兰州化学物理研究所.兰州(730000)
摘    要:模拟碳酸酐酶的活性中心结构,以三(取代吡唑基)硼氢根T~p^R^,^R^1]^-为配体,合成了一系列金属配合物T~p^R^,^R^1]MXR=Ph,2'-thie(2'-噻吩基),Me;R^1=Ph,2'-thie,Me;M=Co,Ni,Cu,Zn,Cd;X=Cl,NO~3,CH~3COO]共13个,均经元素分析,IR,^1HNMR谱表征。选取其中5个有代表性的配合物,采用Stopped-flow技术,研究了模型物催化CO~2可逆水合反应的动力学,结果表明具备酶促反应动力学的一般特征。详细考察了溶液pH值、模型物的结构(尤其是中心金属离子的电子结构)、浓度对该反应的影响,得出一些重要的结果。计算出该反应有、无催化剂时的活化能,从本质上阐明了反应活化能降低是模型物加速反应的根本原因。

关 键 词:碳酸酐酶  模型化合物  催化性能  吡唑P  噻吩P  钴络合物  镍络合物  铜络合物  锌络合物  镉络合物  
修稿时间:1998年2月17日

Investigation on synthesis, characterization and catalytic activity of model complexes of carbonic anhydrase
GUO Sheng-li,LI Xian-jun,XIA Chun-Gu,YIN Yuan-Qi.Investigation on synthesis, characterization and catalytic activity of model complexes of carbonic anhydrase[J].Acta Chimica Sinica,1999,57(3):289-297.
Authors:GUO Sheng-li  LI Xian-jun  XIA Chun-Gu  YIN Yuan-Qi
Institution:Sichuan Univ, Dept Chem.Chengdu(610064);Lanzhou Inst Chem Phys, CAS. Lanzhou(730000)
Abstract:To model active site structure of carbonic anhydrase (CA), we synthesized a series of metal complexes supported by tris(substituted pyrazolyl) hydroborato ligands TpR,R1MX (R = Ph, 2' - thie, Me; R1 = Ph, 2' - thie, Me; M = Co, Ni, Cu, Zn, Cd; X = Cl, NO3, CH3COO). These complexes were all characterized by elemental analysis, IR, and 1H NMR spectroscopy. Activity of five representatives selected from these complexes in catalyzing reversible hydration reaction of CO2 were investigated by the stopped - flow technique. It was showed that the reaction had general dynamic characteristics of enzyme - catalyzed reaction. The activity varied with the pH of reaction system, the structure (especially electric structure of metal ion) and concentration of the model complexes, along with some other important results were obtained. The activation energy of dehydration reaction in the presence and absence of model complexes were calculated, which may interpret well that the higher reaction rate essentially resulted from the decrease in activation energy of the reaction.
Keywords:carbonic anhydrase  model complexes  reversible hydration reaction of CO_2  catalytic activity  stopped-flow technique  
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