Bell E T, LiMuti C, Renz C L, Bell J E
Biochem J. 1985 Jan 1;225(1):209-17. doi: 10.1042/bj2250209.
The 2-position substituent on substrates or substrate analogues for glutamate dehydrogenase is shown to be intimately involved in the induction of conformational changes between subunits in the hexamer by coenzyme. These conformational changes are associated with the negative co-operativity exhibited by this enzyme. 2-Oxoglutarate and L-2-hydroxyglutarate induce indications of co-operativity similar to those induced by the substrate of oxidative deamination, glutamate, in kinetic studies. Glutarate (2-position CH2) does not. A comparison of the effects of L-2-hydroxyglutarate and D-2-hydroxyglutarate or D-glutamate indicates that the 2-position substituent must be in the L-configuration for these conformational changes to be triggered. In addition, glutarate and L-glutamate in ternary enzyme-NAD(P)H-substrate complexes induce very different coenzyme fluorescence properties, showing that glutamate induces a different conformation of the enzyme-coenzyme complex from that induced by glutarate. Although glutamate and glutarate both tighten the binding of reduced coenzyme to the active site, the effect is much greater with glutamate, and the binding is described by two dissociation constants when glutamate is present. The data suggest that the two carboxy groups on the substrate are required to allow synergistic binding of coenzyme and substrate to the active site, but that interactions between the 2-position on the substrate and the enzyme trigger the conformational changes that result in subunit-subunit interactions and in the catalytic co-operativity exhibited by this enzyme.
谷氨酸脱氢酶底物或底物类似物上的2位取代基被证明与辅酶诱导六聚体中亚基间构象变化密切相关。这些构象变化与该酶表现出的负协同性有关。在动力学研究中,2-氧代戊二酸和L-2-羟基戊二酸诱导出的协同性迹象类似于氧化脱氨基作用的底物谷氨酸所诱导的。戊二酸(2位为CH₂)则不然。对L-2-羟基戊二酸和D-2-羟基戊二酸或D-谷氨酸作用的比较表明,2位取代基必须为L-构型才能引发这些构象变化。此外,在三元酶-NAD(P)H-底物复合物中,戊二酸和L-谷氨酸诱导出非常不同的辅酶荧光特性,表明谷氨酸诱导的酶-辅酶复合物构象与戊二酸诱导的不同。尽管谷氨酸和戊二酸都能增强还原辅酶与活性位点的结合,但谷氨酸的作用要大得多,当存在谷氨酸时,结合情况由两个解离常数描述。数据表明,底物上的两个羧基是辅酶和底物协同结合到活性位点所必需的,但底物2位与酶之间的相互作用引发了构象变化,导致亚基间相互作用以及该酶表现出的催化协同性。