Literature DB >> 1551865

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

T J Kubiseski1, D J Hyndman, N A Morjana, T G Flynn.   

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.

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Year:  1992        PMID: 1551865

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  21 in total

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Review 4.  Comparative anatomy of the aldo-keto reductase superfamily.

Authors:  J M Jez; M J Bennett; B P Schlegel; M Lewis; T M Penning
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5.  From metabolomics to fluxomics: a computational procedure to translate metabolite profiles into metabolic fluxes.

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Authors:  Byron C H Chu; Hung Lee
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7.  Mechanistic studies of morphine dehydrogenase and stabilization against covalent inactivation.

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8.  NAD(P)H-dependent aldose reductase from the xylose-assimilating yeast Candida tenuis. Isolation, characterization and biochemical properties of the enzyme.

Authors:  W Neuhauser; D Haltrich; K D Kulbe; B Nidetzky
Journal:  Biochem J       Date:  1997-09-15       Impact factor: 3.857

9.  A pathogenesis related-10 protein CaARP functions as aldo/keto reductase to scavenge cytotoxic aldehydes.

Authors:  Deepti Jain; Hitaishi Khandal; Jitendra Paul Khurana; Debasis Chattopadhyay
Journal:  Plant Mol Biol       Date:  2015-11-14       Impact factor: 4.076

10.  Catalytic mechanism and substrate specificity of the beta-subunit of the voltage-gated potassium channel.

Authors:  Srinivas M Tipparaju; Oleg A Barski; Sanjay Srivastava; Aruni Bhatnagar
Journal:  Biochemistry       Date:  2008-08-02       Impact factor: 3.162

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