Schneider G, Cedergren-Zeppezauer E, Knight S, Eklund H, Zeppezauer M
Biochemistry. 1985 Dec 3;24(25):7503-10. doi: 10.1021/bi00346a070.
Three crystal structures have been determined of active site specific substituted Cd(II) horse liver alcohol dehydrogenase and its complexes. Intensities were collected for the free, orthorhombic enzyme to 2.4-A resolution and for a triclinic binary complex with NADH to 2.7-A resolution. A ternary complex was crystallized from an equilibrium mixture of NAD+ and p-bromobenzyl alcohol. The microspectrophotometric analysis of these single crystals showed the protein-bound coenzyme to be largely NADH, which proves the complex to consist of CdII-LADH, NADH, and p-bromobenzyl alcohol. Intensity data for this abortive ternary complex were collected to 2.9-A resolution. The coordination geometry in the free Cd(II)-substituted enzyme is highly similar to that of the native enzyme. Cd(II) is bound to Cys-46, Cys-174, His-67, and a water molecule in a distorted tetrahedral geometry. Binding of coenzymes induces a conformational change similar to that in the native enzyme. The interactions between the coenzyme and the protein in the binary and ternary complexes are highly similar to those in the native ternary complexes. The substrate binds directly to the cadmium ion in a distorted tetrahedral geometry. No large, significant structural changes compared to the native ternary complex with coenzyme and p-bromobenzyl alcohol were found. The implications of these results for the use of active site specific Cd(II)-substituted horse liver alcohol dehydrogenase as a model system for the native enzyme are discussed.
已测定了活性位点特异性取代的Cd(II)马肝醇脱氢酶及其复合物的三种晶体结构。收集了游离的正交晶系酶至2.4 Å分辨率以及与NADH形成的三斜二元复合物至2.7 Å分辨率的强度数据。从NAD+和对溴苄醇的平衡混合物中结晶出一种三元复合物。对这些单晶的显微分光光度分析表明,与蛋白质结合的辅酶主要是NADH,这证明该复合物由CdII-LADH、NADH和对溴苄醇组成。收集了这种流产三元复合物至2.9 Å分辨率的强度数据。游离的Cd(II)取代酶中的配位几何结构与天然酶高度相似。Cd(II)以扭曲的四面体几何结构与Cys-46、Cys-174、His-67和一个水分子结合。辅酶的结合诱导了与天然酶中类似的构象变化。二元和三元复合物中辅酶与蛋白质之间的相互作用与天然三元复合物中的高度相似。底物以扭曲的四面体几何结构直接与镉离子结合。与含有辅酶和对溴苄醇的天然三元复合物相比,未发现大的、显著的结构变化。讨论了这些结果对于将活性位点特异性Cd(II)取代的马肝醇脱氢酶用作天然酶模型系统的意义。