Chemistry and biology of vitamin E
Top Cited Papers
- 3 December 2004
- journal article
- review article
- Published by Wiley in Molecular Nutrition & Food Research
- Vol. 49 (1) , 7-30
- https://doi.org/10.1002/mnfr.200400049
Abstract
Our understanding of the role of vitamin E in human nutrition, health, and disease has broadened and changed over the past two decades. Viewed initially as nature's most potent lipid‐soluble antioxidant (and discovered for its crucial role in mammalian reproduction) we have now come to realize that vitamin E action has many more facets, depending on the physiological context. Although mainly acting as an antioxidant, vitamin E can also be a pro‐oxidant; it can even have nonantioxidant functions: as a signaling molecule, as a regulator of gene expression, and, possibly, in the prevention of cancer and atherosclerosis. Since the term vitamin E encompasses a group of eight structurally related tocopherols and tocotrienols, individual isomers have different propensities with respect to these novel, nontraditional roles. The particular beneficial effects of the individual isomers have to be considered when dissecting the physiological impact of dietary vitamin E or supplements (mainly containing only the α‐tocopherol isomer) in clinical trials. These considerations are also relevant for the design of transgenic crop plants with the goal of enhancing vitamin E content because an engineered biosynthetic pathway may be biased toward formation of one isomer. In contrast to the tremendous recent advances in knowledge of vitamin E chemistry and biology, there is little hard evidence from clinical and epidemiologic studies on the beneficial effects of supplementation with vitamin E beyond the essential requirement.Keywords
This publication has 219 references indexed in Scilit:
- α-Tocopheryl succinate inhibits proliferation of mesothelioma cells by selective down-regulation of fibroblast growth factor receptorsBiochemical and Biophysical Research Communications, 2004
- Supernatant Protein Factor in Complex with RRR-α-Tocopherylquinone: A Link Between Oxidized Vitamin E and Cholesterol BiosynthesisJournal of Molecular Biology, 2003
- The Molecular Basis of Vitamin E Retention: Structure of Human α-Tocopherol Transfer ProteinJournal of Molecular Biology, 2003
- The role of 2‐methyl‐6‐phytylbenzoquinone methyltransferase in determining tocopherol composition in Synechocystis sp. PCC6803FEBS Letters, 2001
- Tocopherol-Associated Protein Is a Ligand-Dependent Transcriptional ActivatorBiochemical and Biophysical Research Communications, 2001
- Modulation of α‐tropomyosin expression by α‐tocopherol in rat vascular smooth muscle cellsFEBS Letters, 1999
- Treatment of ataxia in isolated vitamin E deficiency caused by α-tocopherol transfer protein deficiencyThe Journal of Pediatrics, 1999
- Localization of α-tocopherol transfer protein in rat brainNeuroscience Letters, 1998
- Phytol synthesis from geranylgeraniol in spinach chloroplastsBiochemical and Biophysical Research Communications, 1981
- An α-tocopherol binding protein in rat liver cytoplasmBiochemical and Biophysical Research Communications, 1975