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猪肌肉醛糖还原酶的研究。动力学机制及辅酶结合时缓慢构象变化的证据。

Studies on pig muscle aldose reductase. Kinetic mechanism and evidence for a slow conformational change upon coenzyme binding.

作者信息

Kubiseski T J, Hyndman D J, Morjana N A, Flynn T G

机构信息

Department of Biochemistry, Queen's University, Kingston, Ontario, Canada.

出版信息

J Biol Chem. 1992 Apr 5;267(10):6510-7.

PMID:1551865
Abstract

Steady state kinetic analysis at pH 7.0 of the reduction of DL-glyceraldehyde by pig muscle aldose reductase showed that the enzyme follows a sequential ordered mechanism with NADPH binding first. However, the "off constant" for NADP+ in the forward direction was 1 order of magnitude less than the kcat. Analysis of this anomaly by pre-steady state kinetics using stopped-flow fluorescence spectroscopy showed that this could be accounted for by isomerization of the enzyme-NADP+ complex and that the rate of isomerization is the rate-limiting step. The rate constant for this step was of the same order of magnitude as the kcat for the forward reaction. Fluorescence emission spectra of free and NADP(H)-bound enzyme suggested a conformational change upon binding of coenzyme. In the reverse direction (oxidation of glycerol) pre-steady state and steady state kinetic analyses were consistent with the rate-limiting step occurring before isomerization of the enzyme-NADPH complex. We conclude, therefore, that during the kinetic mechanism of the reduction of aldehydes by aldose reductase, a slow (kinetically detectable) conformational change in the enzyme occurs upon coenzyme binding. Since NADPH and NADP+ bind to the enzyme very tightly, this has implications for the targeting and binding of drugs that are aldose reductase inhibitors.

摘要

在pH 7.0条件下,对猪肌肉醛糖还原酶还原DL-甘油醛的稳态动力学分析表明,该酶遵循顺序有序机制,NADPH首先结合。然而,正向反应中NADP⁺的“解离常数”比催化常数(kcat)小1个数量级。使用停流荧光光谱通过预稳态动力学对这一异常现象进行分析表明,这可以通过酶-NADP⁺复合物的异构化来解释,并且异构化速率是限速步骤。该步骤的速率常数与正向反应的kcat处于相同的数量级。游离酶和结合NADP(H)的酶的荧光发射光谱表明,辅酶结合后发生了构象变化。在反向反应(甘油氧化)中,预稳态和稳态动力学分析与限速步骤发生在酶-NADPH复合物异构化之前一致。因此,我们得出结论,在醛糖还原酶还原醛的动力学机制中,辅酶结合后酶会发生缓慢(动力学上可检测到)的构象变化。由于NADPH和NADP⁺与酶紧密结合,这对作为醛糖还原酶抑制剂的药物的靶向和结合具有重要意义。

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