Literature DB >> 9299529

Involvement of conserved glycine residues, 229 and 234, of Vibrio harveyi aldehyde dehydrogenase in activity and nucleotide binding.

M Vedadi1, A Vrielink, E Meighen.   

Abstract

The involvement of two conserved glycine residues (Gly229 and Gly234) in activity and nucleotide binding in Vibrio harveyi aldehyde dehydrogenase (ALDH) have been investigated. Each of the glycine residues has been mutated to alanine and the mutant ALDHs have been expressed in Escherichia coli and specifically labelled with [35S]methionine. The G229A mutant was inactive with either NADP+ or NAD+ as coenzyme and did not bind to 2',5'-ADP Sepharose, indicating a complete loss of nucleotide affinity. In contrast, the G234A mutant showed a high affinity for 2',5'-ADP Sepharose. Purified G234A mutant showed similar kinetic properties to the native enzyme including a pre-steady-state burst of NADPH; however, the Michaelis constants for NAD+ and NADP+ were increased by 3- to 9-fold, showing that the mutation had an effect on saturation of the enzyme with NAD(P)+. These data are consistent with the structure for the nucleotide binding domain of Vh.ALDH being similar to that of class 3 or class 2 mammalian ALDHs which differ from the classical nucleotide binding domain found in most dehydrogenases. Copyright 1997 Academic Press.

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Year:  1997        PMID: 9299529     DOI: 10.1006/bbrc.1997.7300

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  5 in total

1.  Crystal structure of the NADP+-dependent aldehyde dehydrogenase from Vibrio harveyi: structural implications for cofactor specificity and affinity.

Authors:  B Ahvazi; R Coulombe; M Delarge; M Vedadi; L Zhang; E Meighen; A Vrielink
Journal:  Biochem J       Date:  2000-08-01       Impact factor: 3.857

2.  Studies on the mechanism of ring hydrolysis in phenylacetate degradation: a metabolic branching point.

Authors:  Robin Teufel; Carla Gantert; Michaela Voss; Wolfgang Eisenreich; Wolfgang Haehnel; Georg Fuchs
Journal:  J Biol Chem       Date:  2011-02-04       Impact factor: 5.157

3.  Plant succinic semialdehyde dehydrogenase. Cloning, purification, localization in mitochondria, and regulation by adenine nucleotides.

Authors:  K B Busch; H Fromm
Journal:  Plant Physiol       Date:  1999-10       Impact factor: 8.340

4.  Aerobic benzoyl-coenzyme A (CoA) catabolic pathway in Azoarcus evansii: conversion of ring cleavage product by 3,4-dehydroadipyl-CoA semialdehyde dehydrogenase.

Authors:  Johannes Gescher; Wael Ismail; Ellen Olgeschläger; Wolfgang Eisenreich; Jürgen Wörth; Georg Fuchs
Journal:  J Bacteriol       Date:  2006-04       Impact factor: 3.490

5.  L-Hydroxyproline and d-Proline Catabolism in Sinorhizobium meliloti.

Authors:  Siyun Chen; Catharine E White; George C diCenzo; Ye Zhang; Peter J Stogios; Alexei Savchenko; Turlough M Finan
Journal:  J Bacteriol       Date:  2016-02-01       Impact factor: 3.490

  5 in total

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