Bauer R, Adolph H W, Andersson I, Danielsen E, Formicka G, Zeppezauer M
Department of Mathematics and Physics, Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Eur Biophys J. 1991;20(4):215-21. doi: 10.1007/BF00183458.
Active site substituted Cd(II) horse liver alcohol dehydrogenase has been studied by Perturbed Angular Correlation of Gamma rays Spectroscopy during turnover conditions for benzaldehyde and 4-trans-(N,N-dimethylamino)cinnamaldehyde. The ternary complex between alcohol dehydrogenase NAD+ and Cl-, and the binary complex between alcohol dehydrogenase and orthophenanthroline have also been studied. The Nuclear Quadrupole Interaction parameters have been interpreted in terms of different coordination geometries for Cd(II) in the catalytic zinc site of the enzyme. Calculation of the nuclear quadrupole interaction for cadmium in the catalytic site of the enzyme with and without coenzyme, based upon the four coordinated geometries determined from X-ray diffraction, agrees with the experimentally determined values. The ternary complexes between enzyme, NAD+ and either Cl- or trifluoroethanol and the binary complex between enzyme and orthophenanthroline have almost identical spectral parameters which are not consistent with a four coordinated geometry, but are consistent with a five coordinated geometry. The non-protein ligands for the ternary complex with trifluoroethanol are suggested to be an alkoxide group and a water molecule. The Nuclear Quadrupole Interaction parameters for the productive ternary complex between enzyme, NADH and an aldehyde is consistent with the four coordinated geometry predicted from X-ray diffraction data having the carbonyl group of the aldehyde substituting the water molecule as ligand to the metal.
在苯甲醛和4-反式-(N,N-二甲基氨基)肉桂醛的周转条件下,利用伽马射线光谱的扰动角关联研究了活性位点取代的Cd(II)马肝醇脱氢酶。还研究了醇脱氢酶NAD⁺和Cl⁻之间的三元复合物,以及醇脱氢酶和邻菲罗啉之间的二元复合物。根据酶催化锌位点中Cd(II)的不同配位几何结构解释了核四极相互作用参数。基于X射线衍射确定的四配位几何结构,计算有无辅酶时酶催化位点中镉的核四极相互作用,与实验测定值一致。酶、NAD⁺与Cl⁻或三氟乙醇之间的三元复合物以及酶与邻菲罗啉之间的二元复合物具有几乎相同的光谱参数,这与四配位几何结构不一致,但与五配位几何结构一致。与三氟乙醇形成的三元复合物的非蛋白质配体被认为是一个醇盐基团和一个水分子。酶、NADH和醛之间的有效三元复合物的核四极相互作用参数与X射线衍射数据预测的四配位几何结构一致,其中醛的羰基取代水分子作为金属的配体。