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Arabidopsis Cytochrome P450 Monooxygenase 71A13 Catalyzes the Conversion of Indole-3-Acetaldoxime in Camalexin Synthesis
by
Glawischnig, Erich
, Nafisi, Majse
, Halkier, Barbara A.
, Olsen, Carl E.
, Goregaoker, Sameer
, Botanga, Christopher J.
, Glazebrook, Jane
in
acids
/ Alternaria
/ Alternaria - physiology
/ Alternaria brassicicola
/ analysis
/ Arabidopsis
/ Arabidopsis - enzymology
/ Arabidopsis - genetics
/ Arabidopsis - microbiology
/ Arabidopsis Proteins
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Arabidopsis thaliana
/ Auxins
/ Biosynthesis
/ Botrytis cinerea
/ Carbon Monoxide
/ Carbon Monoxide - analysis
/ Catalysis
/ Cytochrome
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochromes
/ DNA, Bacterial
/ E coli
/ Enzymes
/ enzymology
/ Escherichia coli
/ Gene Expression Regulation, Plant
/ Genes, Plant
/ genetics
/ Glucosinolates
/ Immunity, Innate
/ immunology
/ indole alkaloids
/ Indoles
/ Indoles - metabolism
/ Infections
/ Leaves
/ metabolism
/ microbiology
/ Mutagenesis, Insertional
/ mutants
/ mutation
/ Nicotiana
/ Nicotiana benthamiana
/ Oximes
/ Oximes - metabolism
/ Pathogens
/ physiology
/ Plant cells
/ Plant Diseases
/ Plant Diseases - immunology
/ Plant Diseases - microbiology
/ Plant Leaves
/ Plant Leaves - microbiology
/ Plants
/ Pseudomonas syringae
/ Pseudomonas syringae - physiology
/ Recombinant Proteins
/ Recombinant Proteins - metabolism
/ RNA, Messenger
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ Substrate Specificity
/ Thiazoles
/ Thiazoles - metabolism
/ Tobacco
2007
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Arabidopsis Cytochrome P450 Monooxygenase 71A13 Catalyzes the Conversion of Indole-3-Acetaldoxime in Camalexin Synthesis
by
Glawischnig, Erich
, Nafisi, Majse
, Halkier, Barbara A.
, Olsen, Carl E.
, Goregaoker, Sameer
, Botanga, Christopher J.
, Glazebrook, Jane
in
acids
/ Alternaria
/ Alternaria - physiology
/ Alternaria brassicicola
/ analysis
/ Arabidopsis
/ Arabidopsis - enzymology
/ Arabidopsis - genetics
/ Arabidopsis - microbiology
/ Arabidopsis Proteins
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Arabidopsis thaliana
/ Auxins
/ Biosynthesis
/ Botrytis cinerea
/ Carbon Monoxide
/ Carbon Monoxide - analysis
/ Catalysis
/ Cytochrome
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochromes
/ DNA, Bacterial
/ E coli
/ Enzymes
/ enzymology
/ Escherichia coli
/ Gene Expression Regulation, Plant
/ Genes, Plant
/ genetics
/ Glucosinolates
/ Immunity, Innate
/ immunology
/ indole alkaloids
/ Indoles
/ Indoles - metabolism
/ Infections
/ Leaves
/ metabolism
/ microbiology
/ Mutagenesis, Insertional
/ mutants
/ mutation
/ Nicotiana
/ Nicotiana benthamiana
/ Oximes
/ Oximes - metabolism
/ Pathogens
/ physiology
/ Plant cells
/ Plant Diseases
/ Plant Diseases - immunology
/ Plant Diseases - microbiology
/ Plant Leaves
/ Plant Leaves - microbiology
/ Plants
/ Pseudomonas syringae
/ Pseudomonas syringae - physiology
/ Recombinant Proteins
/ Recombinant Proteins - metabolism
/ RNA, Messenger
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ Substrate Specificity
/ Thiazoles
/ Thiazoles - metabolism
/ Tobacco
2007
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Arabidopsis Cytochrome P450 Monooxygenase 71A13 Catalyzes the Conversion of Indole-3-Acetaldoxime in Camalexin Synthesis
by
Glawischnig, Erich
, Nafisi, Majse
, Halkier, Barbara A.
, Olsen, Carl E.
, Goregaoker, Sameer
, Botanga, Christopher J.
, Glazebrook, Jane
in
acids
/ Alternaria
/ Alternaria - physiology
/ Alternaria brassicicola
/ analysis
/ Arabidopsis
/ Arabidopsis - enzymology
/ Arabidopsis - genetics
/ Arabidopsis - microbiology
/ Arabidopsis Proteins
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Arabidopsis thaliana
/ Auxins
/ Biosynthesis
/ Botrytis cinerea
/ Carbon Monoxide
/ Carbon Monoxide - analysis
/ Catalysis
/ Cytochrome
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochromes
/ DNA, Bacterial
/ E coli
/ Enzymes
/ enzymology
/ Escherichia coli
/ Gene Expression Regulation, Plant
/ Genes, Plant
/ genetics
/ Glucosinolates
/ Immunity, Innate
/ immunology
/ indole alkaloids
/ Indoles
/ Indoles - metabolism
/ Infections
/ Leaves
/ metabolism
/ microbiology
/ Mutagenesis, Insertional
/ mutants
/ mutation
/ Nicotiana
/ Nicotiana benthamiana
/ Oximes
/ Oximes - metabolism
/ Pathogens
/ physiology
/ Plant cells
/ Plant Diseases
/ Plant Diseases - immunology
/ Plant Diseases - microbiology
/ Plant Leaves
/ Plant Leaves - microbiology
/ Plants
/ Pseudomonas syringae
/ Pseudomonas syringae - physiology
/ Recombinant Proteins
/ Recombinant Proteins - metabolism
/ RNA, Messenger
/ RNA, Messenger - genetics
/ RNA, Messenger - metabolism
/ Substrate Specificity
/ Thiazoles
/ Thiazoles - metabolism
/ Tobacco
2007
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Arabidopsis Cytochrome P450 Monooxygenase 71A13 Catalyzes the Conversion of Indole-3-Acetaldoxime in Camalexin Synthesis
Journal Article
Arabidopsis Cytochrome P450 Monooxygenase 71A13 Catalyzes the Conversion of Indole-3-Acetaldoxime in Camalexin Synthesis
2007
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Overview
Camalexin (3-thiazol-2-yl-indole) is an indole alkaloid phytoalexin produced by Arabidopsis thaliana that is thought to be important for resistance to necrotrophic fungal pathogens, such as Alternaria brassicicola and Botrytis cinerea. It is produced from Trp, which is converted to indole acetaldoxime (IAOx) by the action of cytochrome P450 monooxygenases CYP79B2 and CYP79B3. The remaining biosynthetic steps are unknown except for the last step, which is conversion of dihydrocamalexic acid to camalexin by CYP71B15 (PAD3). This article reports characterization of CYP71A13. Plants carrying cyp71A13 mutations produce greatly reduced amounts of camalexin after infection by Pseudomonas syringae or A. brassicicola and are susceptible to A. brassicicola, as are pad3 and cyp79B2 cyp79B3 mutants. Expression levels of CYP71A13 and PAD3 are coregulated. CYP71A13 expressed in Escherichia coli converted IAOx to indole-3-acetonitrile (IAN). Expression of CYP79B2 and CYP71A13 in Nicotiana benthamiana resulted in conversion of Trp to IAN. Exogenously supplied IAN restored camalexin production in cyp71A13 mutant plants. Together, these results lead to the conclusion that CYP71A13 catalyzes the conversion of IAOx to IAN in camalexin synthesis and provide further support for the role of camalexin in resistance to A. brassicicola.
Publisher
American Society of Plant Biologists
Subject
/ analysis
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Auxins
/ Cytochrome P-450 Enzyme System
/ Cytochrome P-450 Enzyme System - metabolism
/ E coli
/ Enzymes
/ Gene Expression Regulation, Plant
/ genetics
/ Indoles
/ Leaves
/ mutants
/ mutation
/ Oximes
/ Plant Diseases - microbiology
/ Plants
/ Pseudomonas syringae - physiology
/ Recombinant Proteins - metabolism
/ Tobacco
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