Elicitor-Induced Association of Isoflavone O-Methyltransferase with Endomembranes Prevents the Formation and 7-O-Methylation of Daidzein during Isoflavonoid Phytoalexin Biosynthesis
Open Access
- 1 December 2001
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 13 (12) , 2643-2658
- https://doi.org/10.1105/tpc.010382
Abstract
The bioactive isoflavonoids of the Leguminosae often are methylated on the 4′-position of their B-rings. Paradoxically, reverse genetic evidence implicates alfalfa isoflavone O-methyltransferase (IOMT) in the biosynthesis of 4′-O-methylated isoflavonoids such as the phytoalexin medicarpin in vivo, whereas biochemical studies indicate that IOMT has strict specificity for methylation of the A-ring 7-hydroxyl of daidzein, the presumed substrate for O-methylation, in vitro. Radiolabeling and isotope dilution studies now confirm that daidzein is not an intermediate in isoflavonoid phytoalexin biosynthesis in alfalfa. Furthermore, protein gel blot analysis and confocal microscopy of a transiently expressed IOMT–green fluorescent protein fusion in alfalfa leaves show that the operationally soluble IOMT localizes to endomembranes after elicitation of the isoflavonoid pathway. We propose that IOMT colocalizes with the endoplasmic reticulum–associated isoflavone synthase cytochrome P450 to ensure rapid B-ring methylation of the unstable 2,4′,7-trihydroxyisoflavanone product of isoflavone synthase, thereby preventing its dehydration to daidzein and subsequent A-ring methylation by free IOMT. In this way, metabolic channeling at the entry point into isoflavonoid phytoalexin biosynthesis protects an unstable intermediate from an unproductive metabolic conversion.Keywords
This publication has 37 references indexed in Scilit:
- EGFP and DsRed expressing cultures of Escherichia coli imaged by confocal, two‐photon and fluorescence lifetime microscopyFEBS Letters, 2000
- Cloning and Functional Expression of a Cytochrome P450 cDNA Encoding 2-Hydroxyisoflavanone Synthase Involved in Biosynthesis of the Isoflavonoid Skeleton in LicoricePlant Physiology, 1999
- Transgene-Mediated and Elicitor-Induced Perturbation of Metabolic Channeling at the Entry Point into the Phenylpropanoid PathwayPlant Cell, 1999
- MOLECULAR-GENETIC ANALYSIS OF PLANT CYTOCHROME P450-DEPENDENT MONOOXYGENASESAnnual Review of Plant Biology, 1998
- Biosynthesis of flavan-3-ols by leaf extracts of Onobrychis viciifoliaPhytochemistry, 1997
- Isoflavone O-methyltransferase activities in elicitor-treated cell suspension cultures of Medicago sativaPhytochemistry, 1991
- Enzymatic rearrangement of flavanone to isoflavoneFEBS Letters, 1984
- Inducibly-formed isoflavonoids from leaves of soybeanPhytochemistry, 1981
- Biosynthesis of pterocarpan, isoflavan and coumestan metabolites of Medicago sativa: chalcone, isoflavone and isoflavanone precursorsPhytochemistry, 1979
- Flavonoids in genotypes of trifolium subterraneum—IIPhytochemistry, 1968