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角鲨肝脏谷氨酸脱氢酶的动力学研究。

Kinetic studies of dogfish liver glutamate dehydrogenase.

作者信息

Electricwala A H, Dickinson F M

出版信息

Biochem J. 1979 Feb 1;177(2):449-59. doi: 10.1042/bj1770449.

Abstract

Initial-rate studies were made of the oxidation of L-glutamate by NAD+ and NADP+ catalysed by highly purified preparations of dogfish liver glutamate dehydrogenase. With NAD+ as coenzyme the kinetics show the same features of coenzyme activation as seen with the bovine liver enzyme [Engel & Dalziel (1969) Biochem. J. 115, 621--631]. With NADP+ as coenzyme, initial rates are much slower than with NAD+, and Lineweaver--Burk plots are linear over extended ranges of substrate and coenzyme concentration. Stopped-flow studies with NADP+ as coenzyme give no evidence for the accumulation of significant concentrations of NADPH-containing complexes with the enzyme in the steady state. Protection studies against inactivation by pyridoxal 5'-phosphate indicate that NAD+ and NADP+ give the same degree of protection in the presence of sodium glutarate. The results are used to deduce information about the mechanism of glutamate oxidation by the enzyme. Initial-rate studies of the reductive amination of 2-oxoglutarate by NADH and NADPH catalysed by dogfish liver glutamate dehydrogenase showed that the kinetic features of the reaction are very similar with both coenzymes, but reactions with NADH are much faster. The data show that a number of possible mechanisms for the reaction may be discarded, including the compulsory mechanism (previously proposed for the enzyme) in which the sequence of binding is NAD(P)H, NH4+ and 2-oxoglutarate. The kinetic data suggest either a rapid-equilibrium random mechanism or the compulsory mechanism with the binding sequence NH4+, NAD(P)H, 2-oxoglutarate. However, binding studies and protection studies indicate that coenzyme and 2-oxoglutarate do bind to the free enzyme.

摘要

利用高纯度的角鲨鱼肝谷氨酸脱氢酶制剂,对由NAD⁺和NADP⁺催化的L - 谷氨酸氧化反应进行了初速率研究。以NAD⁺作为辅酶时,动力学表现出与牛肝酶相同的辅酶激活特征[恩格尔和达尔齐尔(1969年),《生物化学杂志》115卷,621 - 631页]。以NADP⁺作为辅酶时,初速率比NAD⁺慢得多,并且在底物和辅酶浓度的扩展范围内,林恩韦弗 - 伯克图呈线性。以NADP⁺作为辅酶的停流研究没有证据表明在稳态下存在大量含NADPH的酶复合物积累。针对5'-磷酸吡哆醛失活的保护研究表明,在戊二酸钠存在下,NAD⁺和NADP⁺提供相同程度的保护。这些结果用于推断该酶催化谷氨酸氧化的机制信息。对角鲨鱼肝谷氨酸脱氢酶催化的2 - 氧代戊二酸由NADH和NADPH进行还原胺化反应的初速率研究表明,两种辅酶参与的反应动力学特征非常相似,但与NADH的反应要快得多。数据表明,该反应的一些可能机制可以被排除,包括之前为该酶提出的强制机制,即结合顺序为NAD(P)H、NH₄⁺和2 - 氧代戊二酸。动力学数据表明要么是快速平衡随机机制,要么是结合顺序为NH₄⁺、NAD(P)H、2 - 氧代戊二酸的强制机制。然而,结合研究和保护研究表明辅酶和2 - 氧代戊二酸确实与游离酶结合。

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