Title
CYP71B15 (PAD3) catalyzes the final step in camalexin biosynthesis
Date Issued
01 January 2006
Access level
open access
Resource Type
journal article
Author(s)
Schuhegger R.
Nafisi M.
Petersen B.L.
Olsen C.E.
Svatoš A.
Halkier B.A.
Glawischnig E.
Max Planck Institute for Chemical Ecology
Publisher(s)
American Society of Plant Biologists
Abstract
Camalexin represents the main phytoalexin in Arabidopsis (Arabidopsis thaliana). The camalexin-deficient phytoalexin deficient 3 (pad3) mutant has been widely used to assess the biological role of camalexin, although the exact substrate of the cytochrome P450 enzyme 71B15 encoded by PAD3 remained elusive. 2-(Indol-3-yl)-4,5-dihydro-1,3-thiazole-4-carboxylic acid (dihydrocamalexic acid) was identified as likely intermediate in camalexin biosynthesis downstream of indole-3-acetaldoxime, as it accumulated in leaves of silver nitrate-induced pad3 mutant plants and it complemented the camalexin-deficient phenotype of a cyp79b2/cyp79b3 double-knockout mutant. Recombinant CYP71B15 heterologously expressed in yeast catalyzed the conversion of dihydrocamalexic acid to camalexin with preference of the (S)-enantiomer. Arabidopsis microsomes isolated from leaves of CYP71B15-overexpressing and induced wild-type plants were capable of the same reaction but not microsomes from induced leaves of pad3 mutants. In conclusion, CYP71B15 catalyzes the final step in camalexin biosynthesis. © 2006 American Society of Plant Biologists.
Start page
1248
End page
1254
Volume
141
Issue
4
Language
English
OCDE Knowledge area
Ciencias de las plantas, Botánica Ecología
Scopus EID
2-s2.0-33747148869
PubMed ID
Source
Plant Physiology
ISSN of the container
00320889
Sources of information: Directorio de Producción Científica Scopus