Literature DB >> 15845397

Bifunctional isocitrate-homoisocitrate dehydrogenase: a missing link in the evolution of beta-decarboxylating dehydrogenase.

Kentaro Miyazaki1.   

Abstract

Beta-decarboxylating dehydrogenases comprise 3-isopropylmalate dehydrogenase, isocitrate dehydrogenase, and homoisocitrate dehydrogenase. They share a high degree of amino acid sequence identity and occupy equivalent positions in the amino acid biosynthetic pathways for leucine, glutamate, and lysine, respectively. Therefore, not only the enzymes but also the whole pathways should have evolved from a common ancestral pathway. In Pyrococcus horikoshii, only one pathway of the three has been identified in the genomic sequence, and PH1722 is the sole beta-decarboxylating dehydrogenase gene. The organism does not require leucine, glutamate, or lysine for growth; the single pathway might play multiple (i.e., ancestral) roles in amino acid biosynthesis. The PH1722 gene was cloned and expressed in Escherichia coli and the substrate specificity of the recombinant enzyme was investigated. It exhibited activities on isocitrate and homoisocitrate at near equal efficiency, but not on 3-isopropylmalate. PH1722 is thus a novel, bifunctional beta-decarboxylating dehydrogenase, which likely plays a dual role in glutamate and lysine biosynthesis in vivo.

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Year:  2005        PMID: 15845397     DOI: 10.1016/j.bbrc.2005.03.169

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


  8 in total

Review 1.  Multifunctional enzymes in archaea: promiscuity and moonlight.

Authors:  Baolei Jia; Gang-Won Cheong; Shihong Zhang
Journal:  Extremophiles       Date:  2013-01-03       Impact factor: 2.395

2.  Evolution of a transition state: role of Lys100 in the active site of isocitrate dehydrogenase.

Authors:  Stephen P Miller; Susana Gonçalves; Pedro M Matias; Antony M Dean
Journal:  Chembiochem       Date:  2014-05-02       Impact factor: 3.164

3.  Characterization of two β-decarboxylating dehydrogenases from Sulfolobus acidocaldarius.

Authors:  Kento Takahashi; Fumika Nakanishi; Takeo Tomita; Nagisa Akiyama; Kerstin Lassak; Sonja-Verena Albers; Tomohisa Kuzuyama; Makoto Nishiyama
Journal:  Extremophiles       Date:  2016-09-02       Impact factor: 2.395

4.  The primordial metabolism: an ancestral interconnection between leucine, arginine, and lysine biosynthesis.

Authors:  Marco Fondi; Matteo Brilli; Giovanni Emiliani; Donatella Paffetti; Renato Fani
Journal:  BMC Evol Biol       Date:  2007-08-16       Impact factor: 3.260

5.  Two origins for the gene encoding alpha-isopropylmalate synthase in fungi.

Authors:  Erica M Larson; Alexander Idnurm
Journal:  PLoS One       Date:  2010-07-15       Impact factor: 3.240

6.  Escherichia coli D-malate dehydrogenase, a generalist enzyme active in the leucine biosynthesis pathway.

Authors:  Anastassia A Vorobieva; Mohammad Shahneawz Khan; Patrice Soumillion
Journal:  J Biol Chem       Date:  2014-08-26       Impact factor: 5.157

7.  Enzymology and evolution of the pyruvate pathway to 2-oxobutyrate in Methanocaldococcus jannaschii.

Authors:  Randy M Drevland; Abdul Waheed; David E Graham
Journal:  J Bacteriol       Date:  2007-04-20       Impact factor: 3.490

8.  Kinetics and product analysis of the reaction catalysed by recombinant homoaconitase from Thermus thermophilus.

Authors:  Yunhua Jia; Takeo Tomita; Kazuma Yamauchi; Makoto Nishiyama; David R J Palmer
Journal:  Biochem J       Date:  2006-06-15       Impact factor: 3.857

  8 in total

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