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Biochemistry. 1975 Nov 18;14(23):5094-8. doi: 10.1021/bi00694a011.
The reaction of glutamate dehydrogenase and glutamate (gl) with NAD+ and NADP+ has been studied with stopped-flow techniques. The enzyme was in all experiments present in excess of the coenzyme. The results indicate that the ternary complex (E-NAD(P)H-kg) is present as an intermediate in the formation of the stable complex (E-NAD(P)H-gl). The identification of the complexes is based on their absorption spectra. The binding of the coenzyme to (E-gl) is the rate-limiting step in the formation of (E-NAD(P)H-kg) while the dissociation of alpha-ketoglutarate (kg) from this complex is the rate-limiting step in the formation of (E-NAD(P)H-gl). The Km for glutamate was 20-25 mM in the first reaction and 3 mM in the formation of the stable complex. The Km values were independent of the coenzyme. The reaction rates with NAD+ were approximately 50% greater than those with NADP+. Furthermore, high glutamate concentration inhibited the formation of (E-NADH-kg) while no substrate inhibition was found with NADP+ as coenzyme. ADP enhanced while GTP reduced the rate of (E-NAD(P)H-gl) formation. The rate of formation of (E-NAD(P)H-kg) was inhibited by ADP, while it increased at high glutamate concentration when small amounts of GTP were added. The results show that the higher activity found with NAD+ compared to NADP+ under steady-state assay conditions do not necessarily involve binding of NAD+ to the ADP activating site of the enzyme. Moreover, the substrate inhibition found at high glutamate concentration under steady-state assay condition is not due to the formation of (E-NAD(P)H-gl) as this complex is formed with Km of 3 mM glutamate, and the substrate inhibition is only significant at 20-30 times this concentration.
已采用停流技术研究了谷氨酸脱氢酶与谷氨酸(gl)以及NAD⁺和NADP⁺之间的反应。在所有实验中,酶的量均超过辅酶。结果表明,三元复合物(E-NAD(P)H-kg)是稳定复合物(E-NAD(P)H-gl)形成过程中的一个中间体。复合物的鉴定基于它们的吸收光谱。辅酶与(E-gl)的结合是(E-NAD(P)H-kg)形成过程中的限速步骤,而α-酮戊二酸(kg)从该复合物中的解离是(E-NAD(P)H-gl)形成过程中的限速步骤。在第一个反应中,谷氨酸的Km为二十至二十五毫摩尔,在稳定复合物形成过程中为三毫摩尔。Km值与辅酶无关。与NADP⁺相比,与NAD⁺的反应速率大约高50%。此外,高谷氨酸浓度抑制了(E-NADH-kg)的形成,而以NADP⁺为辅酶时未发现底物抑制现象。ADP增强而GTP降低了(E-NAD(P)H-gl)的形成速率。(E-NAD(P)H-kg)的形成速率受到ADP的抑制,而当添加少量GTP时,在高谷氨酸浓度下其形成速率增加。结果表明,在稳态测定条件下发现的与NADP⁺相比NAD⁺具有更高活性,这不一定涉及NAD⁺与酶的ADP激活位点的结合。此外,在稳态测定条件下高谷氨酸浓度下发现的底物抑制并非由于(E-NAD(P)H-gl)的形成,因为该复合物是在谷氨酸Km为三毫摩尔时形成的,而底物抑制仅在该浓度的二十至三十倍时才显著。