Colen A H
Biochemistry. 1978 Feb 7;17(3):528-33. doi: 10.1021/bi00596a024.
Stopped-flow studies of the initial burst of NADPH production accompanying the oxidative deamination of L-glutamate by L-glutamate dehydrogenase and NADP+ were performed in the presence of alpha-ketoglutarate, a product of the reaction. Both binary enzyme-alpha-ketoglutarate and ternary enzyme--NADP+-alpha-ketoglutarate complexes are inhibitory in the burst presence of the enzyme-catalyzed reaction. Order-of-addition experiments show the binary complex to form rapidly, in the 3 ms dead time of the stopped-flow instrument. There is a distinct lag, however, in the achievement of the full ternary complex inhibitory effect unless the enzyme is preincubated with both NADP+ and alpha-ketoglutarate prior to initiation of the catalytic reaction with L-glutamate. The formation of an inhibitory enzyme--NADP+-alpha-ketoglutarate complex appears to be sufficiently slow to give a delayed kinetic response when alpha-ketoglutarate is added to the reaction system.
在反应产物α-酮戊二酸存在的情况下,对L-谷氨酸脱氢酶和NADP⁺催化L-谷氨酸氧化脱氨反应伴随产生的NADPH初始爆发进行了停流研究。二元酶-α-酮戊二酸复合物和三元酶-NADP⁺-α-酮戊二酸复合物在酶催化反应的爆发阶段均具有抑制作用。添加顺序实验表明,二元复合物在停流仪器3毫秒的死时间内迅速形成。然而,除非在与L-谷氨酸启动催化反应之前,酶先与NADP⁺和α-酮戊二酸预孵育,否则在达到完全三元复合物抑制作用方面存在明显滞后。当将α-酮戊二酸添加到反应体系中时,抑制性酶-NADP⁺-α-酮戊二酸复合物的形成似乎足够缓慢,从而产生延迟的动力学响应。