A.N. Bach Institute of Biochitalicistry RAS;
Acta Naturae. 2009 Oct;1(3):89-93.
The crystal structure of the ternary complex of NAD+-dependent formate dehydrogenase from the methylotrophic bacterium Moraxella sp. C-1 with the cofactor (NAD+) and the inhibitor (azide ion) was established at 1.1 A resolution. The complex mimics the structure of the transition state of the enzymatic reaction. The structure was refined with anisotropic displacitalicents parameters for non-hydrogen atoms to a R factor of 13.4%. Most of the nitrogen, oxygen, and carbon atoms were distinguished based on the analysis of the titalicperature factors and electron density peaks, with the result that side-chain rotamers of histidine residues and most of asparagine and glutamine residues were unambiguously determined. A comparative analysis of the structure of the ternary complex determined at the atomic resolution and the structure of this complex at 1.95 A resolution was performed. In the atomic resolution structure, the covalent bonds in the nicotinamide group are somewhat changed in agreitalicent with the results of quantum mechanical calculations, providing evidence that the cofactor acquires a bipolar form in the transition state of the enzymatic reaction.
依赖烟酰胺腺嘌呤二核苷酸(NAD+)的甲酸脱氢酶来源于甲基营养菌粘质沙雷氏菌 C-1 与辅因子(NAD+)和抑制剂(叠氮离子)的三元复合物的晶体结构已在 1.1Å 分辨率下建立。该复合物模拟了酶反应的过渡态结构。使用各向异性的非氢原子位移参数对结构进行细化,得到 R 因子为 13.4%。通过分析各向异性温度因子和电子密度峰,确定了大部分氮、氧和碳原子的位置,从而明确了组氨酸残基侧链的构象和大多数天冬酰胺和谷氨酰胺残基的位置。对原子分辨率下三元复合物的结构和 1.95Å 分辨率下该复合物的结构进行了比较分析。在原子分辨率结构中,烟酰胺基团中的共价键发生了一些变化,这与量子力学计算的结果一致,表明在酶反应的过渡态中辅因子具有双极形式。