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果蝇L-β-羟基酸脱氢酶的亚基结构和动力学特性

Subunit structure and kinetic properties of L-beta-hydroxy acid dehydrogenase of Drosophila.

作者信息

Cannistraro V J, Borack L I, Chase T

出版信息

Biochim Biophys Acta. 1979 Jul 11;569(1):1-5. doi: 10.1016/0005-2744(79)90074-3.

Abstract

L-beta-hydroxyacid dehydrogeanse (L-gulonate:NAD+ 3-oxidoreductase, EC 1.1.1.45) of Drosophila is made up of two non-identical subunits with molecular weights of 40 000 and 23 500. Michaelis constants calculated at saturating concentrations of the other substrate were 0.13 mM for NAD+, 0.85 mM for L-gulonate, 14.8 mM for L-beta-hydroxybutyrate; dissociation constants (Kia) were 2.8 mM for L-gulonate, 22 mM for L-beta-hydroxybutyrate. The maximum velocity with L-gulonate as substrate was ten-fold greater than with beta-hydroxybutyrate. As product inhibitors, both NADH and acetoacetate are competitive vs. both substrates, suggesting a rapid equilibrium random mechanism.

摘要

果蝇的L-β-羟酸脱氢酶(L-古洛糖酸:NAD⁺ 3-氧化还原酶,EC 1.1.1.45)由两个不同的亚基组成,分子量分别为40000和23500。在其他底物饱和浓度下计算得到的米氏常数,对于NAD⁺为0.13 mM,对于L-古洛糖酸为0.85 mM,对于L-β-羟基丁酸为14.8 mM;解离常数(Kia)对于L-古洛糖酸为2.8 mM,对于L-β-羟基丁酸为22 mM。以L-古洛糖酸为底物时的最大反应速度比以β-羟基丁酸为底物时大十倍。作为产物抑制剂,NADH和乙酰乙酸对两种底物均表现为竞争性抑制,提示为快速平衡随机机制。

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