Literature DB >> 9215914

Cloning of the Arabidopsis and rice formaldehyde dehydrogenase genes: implications for the origin of plant ADH enzymes.

R Dolferus1, J C Osterman, W J Peacock, E S Dennis.   

Abstract

This article reports the cloning of the genes encoding the Arabidopsis and rice class III ADH enzymes, members of the alcohol dehydrogenase or medium chain reductase/dehydrogenase superfamily of proteins with glutathione-dependent formaldehyde dehydrogenase activity (GSH-FDH). Both genes contain eight introns in exactly the same positions, and these positions are conserved in plant ethanol-active Adh genes (class P). These data provide further evidence that plant class P genes have evolved from class III genes by gene duplication and acquisition of new substrate specificities. The position of introns and similarities in the nucleic acid and amino acid sequences of the different classes of ADH enzymes in plants and humans suggest that plant and animal class III enzymes diverged before they duplicated to give rise to plant and animal ethanol-active ADH enzymes. Plant class P ADH enzymes have gained substrate specificities and evolved promoters with different expression properties, in keeping with their metabolic function as part of the alcohol fermentation pathway.

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Year:  1997        PMID: 9215914      PMCID: PMC1208041     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  46 in total

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Journal:  Trends Biochem Sci       Date:  1992-02       Impact factor: 13.807

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Journal:  Cell       Date:  1986-07-18       Impact factor: 41.582

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Journal:  Biochem Genet       Date:  1973-01       Impact factor: 1.890

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Journal:  Nature       Date:  1970-08-15       Impact factor: 49.962

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Journal:  J Mol Biol       Date:  1983-11-15       Impact factor: 5.469

6.  Evidence for the identity of glutathione-dependent formaldehyde dehydrogenase and class III alcohol dehydrogenase.

Authors:  M Koivusalo; M Baumann; L Uotila
Journal:  FEBS Lett       Date:  1989-10-23       Impact factor: 4.124

7.  Sequence analysis of two null-mutant alleles of the single Arabidopsis Adh locus.

Authors:  R Dolferus; D Van den Bossche; M Jacobs
Journal:  Mol Gen Genet       Date:  1990-11

8.  Cephalopod alcohol dehydrogenase: purification and enzymatic characterization.

Authors:  M Rosario Fernández; H Jörnvall; A Moreno; R Kaiser; X Parés
Journal:  FEBS Lett       Date:  1993-08-16       Impact factor: 4.124

9.  Molecular cloning and DNA sequence of the Arabidopsis thaliana alcohol dehydrogenase gene.

Authors:  C Chang; E M Meyerowitz
Journal:  Proc Natl Acad Sci U S A       Date:  1986-03       Impact factor: 11.205

10.  Cloning and characterization of the ADH5 gene encoding human alcohol dehydrogenase 5, formaldehyde dehydrogenase.

Authors:  M W Hur; H J Edenberg
Journal:  Gene       Date:  1992-11-16       Impact factor: 3.688

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  14 in total

1.  Effect of abiotic stress stimuli on S-nitrosoglutathione reductase in plants.

Authors:  Lucie Kubienová; Tereza Tichá; Jana Jahnová; Lenka Luhová; Barbora Mieslerová; Marek Petřivalský
Journal:  Planta       Date:  2013-10-09       Impact factor: 4.116

2.  S-nitrosoglutathione reductase affords protection against pathogens in Arabidopsis, both locally and systemically.

Authors:  Christine Rustérucci; M Carme Espunya; Maykelis Díaz; Matthieu Chabannes; M Carmen Martínez
Journal:  Plant Physiol       Date:  2007-02-02       Impact factor: 8.340

3.  Spatial and temporal analysis of the local response to wounding in Arabidopsis leaves.

Authors:  Christian Delessert; Iain W Wilson; Dominique Van Der Straeten; Elizabeth S Dennis; Rudy Dolferus
Journal:  Plant Mol Biol       Date:  2004-05       Impact factor: 4.076

Review 4.  Function of S-nitrosoglutathione reductase (GSNOR) in plant development and under biotic/abiotic stress.

Authors:  Marina Leterrier; Mounira Chaki; Morad Airaki; Raquel Valderrama; José M Palma; Juan B Barroso; Francisco J Corpas
Journal:  Plant Signal Behav       Date:  2011-06-01

5.  Repression of formate dehydrogenase in Solanum tuberosum increases steady-state levels of formate and accelerates the accumulation of proline in response to osmotic stress.

Authors:  Françoise Ambard-Bretteville; Céline Sorin; Fabrice Rébeillé; Cécile Hourton-Cabassa; Catherine Colas des Francs-Small
Journal:  Plant Mol Biol       Date:  2003-08       Impact factor: 4.076

6.  A plant orthologue of RNase L inhibitor (RLI) is induced in plants showing RNA interference.

Authors:  Antonio Sergio Kimus Braz; Jean Finnegan; Peter Waterhouse; Rogério Margis
Journal:  J Mol Evol       Date:  2004-07       Impact factor: 2.395

7.  Proteome analysis of Arabidopsis leaf peroxisomes reveals novel targeting peptides, metabolic pathways, and defense mechanisms.

Authors:  Sigrun Reumann; Lavanya Babujee; Changle Ma; Stephanie Wienkoop; Tanja Siemsen; Gerardo E Antonicelli; Nicolas Rasche; Franziska Lüder; Wolfram Weckwerth; Olaf Jahn
Journal:  Plant Cell       Date:  2007-10-19       Impact factor: 11.277

8.  Enhanced formaldehyde detoxification by overexpression of glutathione-dependent formaldehyde dehydrogenase from Arabidopsis.

Authors:  Hakima Achkor; Maykelis Díaz; M Rosario Fernández; Josep Antoni Biosca; Xavier Parés; M Carmen Martínez
Journal:  Plant Physiol       Date:  2003-08       Impact factor: 8.340

9.  Arabidopsis roots and shoots have different mechanisms for hypoxic stress tolerance.

Authors:  M H Ellis; E S Dennis; W J Peacock
Journal:  Plant Physiol       Date:  1999-01       Impact factor: 8.340

10.  Gene targeting by homologous recombination as a biotechnological tool for rice functional genomics.

Authors:  Rie Terada; Yasuyo Johzuka-Hisatomi; Miho Saitoh; Hisayo Asao; Shigeru Iida
Journal:  Plant Physiol       Date:  2007-04-20       Impact factor: 8.340

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