THE MECHANISM OF SUBSTRATE AND COENZYME BINDING TO CLOSTRIDIAL GLUTAMATE-DEHYDROGENASE DURING REDUCTIVE AMINATION

被引:11
作者
BASSO, LA [1 ]
ENGEL, PC [1 ]
WALMSLEY, AR [1 ]
机构
[1] UNIV SHEFFIELD,DEPT MOLEC BIOL & BIOTECHNOL,KREBS INST BIOMOLEC RES,SHEFFIELD S10 2UH,S YORKSHIRE,ENGLAND
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1995年 / 234卷 / 02期
关键词
GLUTAMATE DEHYDROGENASE; CLOSTRIDIUM SYMBIOSUM; TRANSIENT KINETICS;
D O I
10.1111/j.1432-1033.1995.603_b.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The binding of NADH and 2-oxoglutarate to glutamate dehydrogenase (GDH) from Clostridium symbiosum has been studied by fluorescence spectroscopy. The K-d values for the binding of these ligands have been measured by titration of either the nucleotide or protein fluorescence. During ternary complex formation, the substrate and coenzyme binding sites interact in a positive cooperative manner, but steady-state studies reveal a decrease in affinity of the catalytic complex indicative of negative cooperativity. It was possible to determine the kinetics of formation of the glutamate-dehydrogenase - NADH complex by stopped-flow fluorescence spectroscopy but formation of the glutamate-dehydrogenase-2-oxoglutarate complex was optically silent. Ternary complex formation was characterized by a large quench in protein fluorescence. The binding of NADH to the glutamate-dehydrogenase-2-oxoglutarate binary complex is characterised by a linear increase in the association rate constant, consistent with a one-step binding process. However, the binding of 2-oxoglutarate to the glutamate-dehydrogenase-NADH binary complex is characterised by a decrease in the rate for the observed transient. This suggests that 2-oxoglutarate binds to a different conformation of the enzyme to that stabilized by NADH, and that the transition between these different conformational forms is rate limiting for ternary complex formation. NADH and 2-oxoglutarate can therefore stabilize different conformational states of the enzyme. Collectively, these studies are suggestive of a kinetic model for ternary complex formation that involves the oscillation of the free, binary, and ternary glutamate dehydrogenase complexes between two different conformational states, termed E(1) and E(2). The equilibrium constants for ternary complex formation via the predominant pathway have been determined. The cooperativity betwen the substrate and coenzyme binding sites can be accounted for by the displacement of the equilibria between the E(1) and E(2) states because of their difference in affinities for NADH and 2-oxoglutarate.
引用
收藏
页码:603 / 615
页数:13
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