Gene-Nutrient Interactions and DNA Methylation
Open Access
- 1 August 2002
- journal article
- review article
- Published by Elsevier in Journal of Nutrition
- Vol. 132 (8) , 2382S-2387S
- https://doi.org/10.1093/jn/132.8.2382s
Abstract
Many micronutrients and vitamins are critical for DNA synthesis/repair and maintenance of DNA methylation patterns. Folate has been most extensively investigated in this regard because of its unique function as methyl donor for nucleotide synthesis and biological methylation. Cell culture and animal and human studies showed that deficiency of folate induces disruption of DNA as well as alterations in DNA methylation status. Animal models of methyl deficiency demonstrated an even stronger cause-and-effect relationship than did studies using a folate-deficient diet alone. Such observations imply that the adverse effects of inadequate folate status on DNA metabolism are mostly due to the impairment of methyl supply. Recently, an interaction was observed between folate status and a common mutation in the gene encoding for methylenetetrahydrofolate reductase, an essential enzyme in one-carbon metabolism, in determining genomic DNA methylation. This finding suggests that the interaction between a nutritional status with a genetic polymorphism can modulate gene expression through DNA methylation, especially when such polymorphism limits the methyl supply. DNA methylation, both genome-wide and gene-specific, is of particular interest for the study of cancer, aging and other conditions related to cell-cycle regulation and tissue-specific differentiation, because it affects gene expression without permanent alterations in DNA sequence such as mutations or allele deletions. Understanding the patterns of DNA methylation through the interaction with nutrients is fundamental, not only to provide pathophysiological explanations for the development of certain diseases, but also to improve the knowledge of possible prevention strategies by modifying a nutritional status in at-risk populations.Keywords
This publication has 60 references indexed in Scilit:
- Zinc and the geneMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 2001
- Hypomethylation of CpG Sites and c‐myc Gene Overexpression in Hepatocellular Carcinomas, but Not Hyperplastic Nodules, Induced by a Choline‐deficient L‐Amino Acid‐defined Diet in RatsJapanese Journal of Cancer Research, 1999
- HOMOCYSTEINE METABOLISMAnnual Review of Nutrition, 1999
- A candidate genetic risk factor for vascular disease: a common mutation in methylenetetrahydrofolate reductaseNature Genetics, 1995
- DNA Methylation in Folate Deficiency: Use of CpG MethylaseBiochemical and Biophysical Research Communications, 1993
- High frequency mutagenesis by a DNA methyltransferaseCell, 1992
- The onset of oncogene hypomethylation in the livers of rats fed methyl-deficient, amino acid-defined dietsCarcinogenesis: Integrative Cancer Research, 1992
- Targeted mutation of the DNA methyltransferase gene results in embryonic lethalityPublished by Elsevier ,1992
- A fraction of the mouse genome that is derived from islands of nonmethylated, CpG-rich DNAPublished by Elsevier ,1985
- Transcobalamin II deficiency associated with unusual bone marrow findings and chromosomal abnormalitiesAmerican Journal of Hematology, 1983