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PMID: 12473102 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Structural diversity and transcription of class III peroxidases from Arabidopsis thaliana.

European journal of biochemistry ·Vol. 269 ·No. 24 ·2002-12-00 ·Pages 6063-81

Welinder KG, Justesen AF, Kjaersgård IV, Jensen RB, Rasmussen SK, Jespersen HM, Duroux L

Abstract

Understanding peroxidase function in plants is complicated by the lack of substrate specificity, the high number of genes, their diversity in structure and our limited knowledge of peroxidase gene transcription and translation. In the present study we sequenced expressed sequence tags (ESTs) encoding novel heme-containing class III peroxidases from Arabidopsis thaliana and annotated 73 full-length genes identified in the genome. In total, transcripts of 58 of these genes have now been observed. The expression of individual peroxidase genes was assessed in organ-specific EST libraries and compared to the expression of 33 peroxidase genes which we analyzed in whole plants 3, 6, 15, 35 and 59 days after sowing. Expression was assessed in root, rosette leaf, stem, cauline leaf, flower bud and cell culture tissues using the gene-specific and highly sensitive reverse transcriptase-polymerase chain reaction (RT-PCR). We predicted that 71 genes could yield stable proteins folded similarly to horseradish peroxidase (HRP). The putative mature peroxidases derived from these genes showed 28-94% amino acid sequence identity and were all targeted to the endoplasmic reticulum by N-terminal signal peptides. In 20 peroxidases these signal peptides were followed by various N-terminal extensions of unknown function which are not present in HRP. Ten peroxidases showed a C-terminal extension indicating vacuolar targeting. We found that the majority of peroxidase genes were expressed in root. In total, class III peroxidases accounted for an impressive 2.2% of root ESTs. Rather few peroxidases showed organ specificity. Most importantly, genes expressed constitutively in all organs and genes with a preference for root represented structurally diverse peroxidases (< 70% sequence identity). Furthermore, genes appearing in tandem showed distinct expression profiles. The alignment of 73 Arabidopsis peroxidase sequences provides an easy access to the identification of orthologous peroxidases in other plant species and will provide a common platform for combining knowledge of peroxidase structure and function relationships obtained in various species.

MeSH Terms
Amino Acid Sequence Arabidopsis/enzymology,genetics DNA, Complementary/metabolism Expressed Sequence Tags Genome, Plant Heme/chemistry Horseradish Peroxidase/metabolism Introns Models, Molecular Molecular Sequence Data Peroxidases/chemistry,genetics Protein Structure, Tertiary Reverse Transcriptase Polymerase Chain Reaction Sequence Homology, Amino Acid Transcription, Genetic
Chemicals
DNA, Complementary Heme Horseradish Peroxidase Peroxidases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Welinder Karen G
Department of Protein Chemistry, University of Copenhagen, Denmark. [email protected]
Justesen Annemarie F
Kjaersgård Inger V H
Jensen Rikke B
Rasmussen Søren K
Jespersen Hans M
Duroux Laurent
Article Info
Journal
European journal of biochemistry
Abbr.
Eur J Biochem
ISSN
0014-2956
Published
2002-12-00
Pages
6063-81
Language
English
Region
England
NLM ID
0107600
Subset
IM
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