Colen A H, Wilkinson R R, Fisher H F
Biochim Biophys Acta. 1977 Apr 12;481(2):377-83. doi: 10.1016/0005-2744(77)90271-6.
The pH dependence of the initial transient velocity of NADPH production during the burst phase of the oxidative deamination of L-glutamate by L-glutamate dehydrogenase (L-glutamate : NAD(P)+ oxidoreductase (deaminating), EC 1.4.1.3) and NADP+ has been measured by stopped-flow spectrophotometry. These studies provide evidence that the entire pH dependence below pH 8.26 arises from reaction steps contributing to V of the burst with an apparent pKa of 8.1 +/- 0.1. The data are consistent with a model in which the formation of the first enzyme-coenzyme-substrate ternary complex on the reaction path equilibrates rapidly and in which the pH-dependent steps are mechanistically close to and may include the catalytic hydrogen transfer itself. At pH 8.87, there is evidence that L-glutamate binds less tightly to the enzyme and to the enzyme-NADP+ complex than at lower pH values.
通过停流分光光度法测量了L-谷氨酸脱氢酶(L-谷氨酸:NAD(P)+氧化还原酶(脱氨基),EC 1.4.1.3)催化L-谷氨酸氧化脱氨基爆发阶段NADPH产生初始瞬态速度的pH依赖性。这些研究表明,pH低于8.26时,整个pH依赖性源于对爆发阶段V有贡献的反应步骤,其表观pKa为8.1±0.1。数据与以下模型一致:反应路径上第一个酶-辅酶-底物三元复合物的形成迅速达到平衡,且pH依赖性步骤在机制上接近并可能包括催化氢转移本身。在pH 8.87时,有证据表明L-谷氨酸与酶以及酶-NADP+复合物的结合比在较低pH值时更弱。