Glycosylation of resveratrol protects it from enzymic oxidation
Open Access
- 15 August 2003
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 374 (1) , 157-163
- https://doi.org/10.1042/bj20030141
Abstract
Plant polyphenols, including dietary polyphenols such as resveratrol, are important components in the plant antioxidant and defence systems. They are also known to exert beneficial effects on human health through diet. As they are produced, these polyphenols may be subjected to deleterious enzymic oxidation by the plant polyphenol oxidases. They are generally synthesized as glycosides like 5,4′-dihydroxystilbene-3-O-β-d-glucopyranoside, the 3-glucoside of resveratrol. The effects of the glycosylation and methylation of the parent resveratrol on its enzymic oxidation were studied. Methyl and glucosyl derivatives were synthesized using simple one-step methodologies. The kinetics of their enzymic oxidation by tyrosinases were defined. Substitution at the p-hydroxy group, by either glucose or methyl, abolished enzymic oxidation by both mushroom and grape tyrosinases. Substitution at the m-hydroxy group with methyl had a small effect, but substitution with glucose resulted in a much lower affinity of the enzymes for the glycoside. We suggest that glycosylation of polyphenols in nature helps to protect these vital molecules from enzymic oxidation, extending their half-life in the cell and maintaining their beneficial antioxidant capacity and biological properties.Keywords
This publication has 37 references indexed in Scilit:
- Dietary Flavonoids as Potential NeuroprotectantsBiological Chemistry, 2002
- Competitive Inhibition of Mushroom Tyrosinase by 4-Substituted BenzaldehydesJournal of Agricultural and Food Chemistry, 2001
- Specific Structural Determinants Are Responsible for the Antioxidant Activity and the Cell Cycle Effects of ResveratrolJournal of Biological Chemistry, 2001
- Flavonoid B-Ring Chemistry and Antioxidant Activity: Fast Reaction KineticsBiochemical and Biophysical Research Communications, 2001
- Epicatechin and its in vivo metabolite, 3′-O-methyl epicatechin, protect human fibroblasts from oxidative-stress-induced cell death involving caspase-3 activationBiochemical Journal, 2001
- The World of ResveratrolPublished by Springer Nature ,2001
- Resveratrol Is Absorbed in the Small Intestine as Resveratrol GlucuronideBiochemical and Biophysical Research Communications, 2000
- Quercetin Glucosides Interact With the Intestinal Glucose Transport Pathway 11This work was supported by a UK Biotechnology and Biological Sciences Research Council Competitive Strategic Grant.Free Radical Biology & Medicine, 1998
- Study of stereospecificity in mushroom tyrosinaseBiochemical Journal, 1998
- Consumption of red wine with meals reduces the susceptibility of human plasma and low-density lipoprotein to lipid peroxidationThe American Journal of Clinical Nutrition, 1995