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PMID: 18495639 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Identification and characterization of a plastid-localized Arabidopsis glyoxylate reductase isoform: comparison with a cytosolic isoform and implications for cellular redox homeostasis and aldehyde detoxification.

Journal of experimental botany ·Vol. 59 ·No. 9 ·2008-00-00 ·Pages 2545-54

Simpson JP, Di Leo R, Dhanoa PK, Allan WL, Makhmoudova A, Clark SM, Hoover GJ, Mullen RT, Shelp BJ

Abstract

Enzymes that reduce the aldehyde chemical grouping (i.e. H-C=O) to its corresponding alcohol could be crucial in maintaining plant health. Recently, recombinant expression of a cytosolic enzyme from Arabidopsis thaliana (L.) Heynh (designated as glyoxylate reductase 1 or AtGR1) revealed that it effectively catalyses the in vitro reduction of both glyoxylate and succinic semialdehyde (SSA). In this paper, web-based bioinformatics tools revealed a second putative GR cDNA (GenBank Accession No. AAP42747; designated herein as AtGR2) that is 57% identical on an amino acid basis to GR1. Sequence encoding a putative targeting signal (N-terminal 43 amino acids) was deleted from the full-length GR2 cDNA and the resulting truncated gene was co-expressed with the molecular chaperones GroES/EL in Escherichia coli, enabling production and purification of soluble recombinant protein. Kinetic analysis revealed that recombinant GR2 catalysed the conversion of glyoxylate to glycolate (K(m) glyoxylate=34 microM), and SSA to gamma-hydroxybutyrate (K(m) SSA=8.96 mM) via an essentially irreversible, NADPH-based mechanism. GR2 had a 350-fold higher preference for glyoxylate than SSA, based on the performance constants (k(cat)/K(m)). Fluorescence microscopic analysis of tobacco (Nicotiana tabacum L.) suspension cells transiently transformed with GR1 linked to the green fluorescent protein (GFP) revealed that GR1 was localized to the cytosol, whereas GR2-GFP was localized to plastids via targeting information contained within its N-terminal 45 amino acids. The identification and characterization of distinct plastidial and cytosolic glyoxylate reductase isoforms is discussed with respect to aldehyde detoxification and the plant stress response.

MeSH Terms
Alcohol Oxidoreductases/chemistry,genetics,metabolism Aldehydes/metabolism Amino Acid Sequence Arabidopsis/chemistry,enzymology,genetics,physiology Arabidopsis Proteins/chemistry,genetics,metabolism Cell Line Cytosol/chemistry,enzymology,physiology Gene Expression Homeostasis Kinetics Molecular Sequence Data Oxidation-Reduction Plastids/chemistry,enzymology,genetics,physiology Protein Isoforms/chemistry,genetics,metabolism Protein Transport Recombinant Proteins/chemistry,genetics,metabolism Sequence Alignment Substrate Specificity Tobacco
Chemicals
Aldehydes Arabidopsis Proteins Protein Isoforms Recombinant Proteins Alcohol Oxidoreductases glyoxylate reductase
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Simpson Jeffrey P
Department of Plant Agriculture, University of Guelph, Guelph, Ontario, Canada.
Di Leo Rosa
Dhanoa Preetinder K
Allan Wendy L
Makhmoudova Amina
Clark Shawn M
Hoover Gordon J
Mullen Robert T
Shelp Barry J
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Article Info
Journal
Journal of experimental botany
Abbr.
J Exp Bot
ISSN
1460-2431
Published
2008-00-00
Epub
2008-00-20
Pages
2545-54
Language
English
Region
England
NLM ID
9882906
PMCID
PMC2423656
Subset
IM
Databases
GENBANK
AAP42747
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