Yamazaki S, Tsai L
J Biol Chem. 1980 Jul 10;255(13):6462-5.
The 8-hydroxy-5-deazaflavin-dependent NADP+ reductase component of the formate NADP+ oxidoreductase system of Methanococcus vannielii has been purified to homogeneity. The enzyme is specific for NADP+ and 8-hydroxy-5-deazaflavin. It catalyzes the reaction: 1,5-Dihydro-8-hydroxy-5-deazaflavin anion + NADP+ in equilibrium 8-hydroxy-5-deazaflavin + NADPH. The apparent molecular weight of the native enzyme is 85,000. A subunit molecular weight of 43,000 determined by sodium dodecyl sulfate gel electrophoresis indicates that the native enzyme is a dimer. The optimal temperature for catalytic activity is 17-20 degrees C and the pH maxima are 7.9 and 4.8 for the forward and reverse reactions, respectively. The kcat value of the forward reaction is 24 times greater than that of the reverse reaction, thus the production of NADPH at pH 7.0 is more favorable than its consumption. The reductase contains one or more sulfhydryl groups which are essential for catalytic activity.
万氏甲烷球菌甲酸NADP⁺氧化还原酶系统中依赖8-羟基-5-脱氮黄素的NADP⁺还原酶组分已被纯化至同质。该酶对NADP⁺和8-羟基-5-脱氮黄素具有特异性。它催化以下反应:1,5-二氢-8-羟基-5-脱氮黄素阴离子 + NADP⁺ 处于平衡状态 8-羟基-5-脱氮黄素 + NADPH。天然酶的表观分子量为85,000。通过十二烷基硫酸钠凝胶电泳测定的亚基分子量为43,000,表明天然酶是二聚体。催化活性的最佳温度为17 - 20℃,正向和反向反应的pH最大值分别为7.9和4.8。正向反应的kcat值比反向反应大24倍,因此在pH 7.0时NADPH的生成比其消耗更有利。该还原酶含有一个或多个对催化活性至关重要的巯基。