Hönes G, Hönes J, Hauser M
Biol Chem Hoppe Seyler. 1986 Feb;367(2):103-8. doi: 10.1515/bchm3.1986.367.1.103.
The coenzyme-binding site in mitochondrial malate dehydrogenase from pig heart was studied using dynamic fluorescence anisotropy decay. The dynamics of the fluorescent ligands NADH and 6-cyano-7-hydroxy-4,8-dimethylcoumarin were used to detect conformational changes at the dihydronicotinamide-and at the adenosine-binding sites, respectively. Addition of the natural substrate L-malate to the complex from enzyme and NADH does not influence the complete immobilization of the dihydronicotinamide group, whereas the stereoisomer D-malate and the substrate-analogue hydroxymalonate form ternary complexes with highly mobile dihydronicotinamide. The dynamics of the fluorescent adenosine-analogue are not influenced by formation of complexes with substrate and substrate-analogues. Thus the conformational changes at the dihydronicotinamide-binding site remain local and are not transmitted to the adenosine-binding site.
利用动态荧光各向异性衰减研究了猪心肌线粒体苹果酸脱氢酶中的辅酶结合位点。分别使用荧光配体NADH和6-氰基-7-羟基-4,8-二甲基香豆素的动力学来检测二氢烟酰胺结合位点和腺苷结合位点的构象变化。向酶与NADH形成的复合物中添加天然底物L-苹果酸不会影响二氢烟酰胺基团的完全固定,而立体异构体D-苹果酸和底物类似物羟基丙二酸会与高度可移动的二氢烟酰胺形成三元复合物。荧光腺苷类似物的动力学不受与底物和底物类似物形成复合物的影响。因此,二氢烟酰胺结合位点的构象变化保持局部性,不会传递到腺苷结合位点。