Folate is an essential co-factor in the remethylation of homocysteine to methionine, thereby ensuring the supply of S-adenosylmethionine, the methyl group donor for most biological methylations, including that of DNA. Aberrant patterns and dysregulation of DNA methylation are consistent events in carcinogenesis and hence, DNA methylation is considered to be mechanistically related to the development of cancer. Folate deficiency appears to increase the risk of several malignancies, and aberrant DNA methylation has been considered to be a leading mechanism by which folate deficiency enhances carcinogenesis. Although diets deficient in methyl group donors (choline, folate, methionine and vitamin B-12) have been consistently observed to induce ...
Folate derivatives are required for nucleotide/DNA synthesis and DNA methylation. Methylenetetrahydr...
Experimental studies demonstrated that maternal exposure to certain environmental and dietary factor...
Folate deficiency may affect gene expression by disrupting DNA methylation patterns or by inducing b...
There is increasing evidence to suggest that reduced folate status may be a causative factor in carc...
Folate and methionine are critical for one-carbon metabolism, impacting DNA synthesis, repair, and m...
Global DNA hypomethylation is an early event in colorectal tumourigenesis although its cause remains...
Folic acid and natural folates are B group vitamins obtained exclusively from the diet. Biochemicall...
Folic acid deficiency in humans has been linked with megaloblastic anaemia, neural tube defects in t...
Folic acid plays a critical role in the prevention of chromosome breakage and hypomethylation of DNA...
DNA methylation is an essential mechanism for epigenetic control of genes expression and for mainten...
Folate, together with other B-vitamins, plays a crucial role in epigenetic regulation. Folate-mediat...
In order to maintain normal function and homeostasis, appropriate gene expression is critical in ind...
Advances in molecular biology greatly contributed, in the past decades, to a deeper understanding of...
The C677T polymorphism in the methylenetetrahydrofolate reductase (MTHFR) gene is associated with a ...
Folate is a water-soluble B-vitamin that holds a key position in cell growth and development. By DNA...
Folate derivatives are required for nucleotide/DNA synthesis and DNA methylation. Methylenetetrahydr...
Experimental studies demonstrated that maternal exposure to certain environmental and dietary factor...
Folate deficiency may affect gene expression by disrupting DNA methylation patterns or by inducing b...
There is increasing evidence to suggest that reduced folate status may be a causative factor in carc...
Folate and methionine are critical for one-carbon metabolism, impacting DNA synthesis, repair, and m...
Global DNA hypomethylation is an early event in colorectal tumourigenesis although its cause remains...
Folic acid and natural folates are B group vitamins obtained exclusively from the diet. Biochemicall...
Folic acid deficiency in humans has been linked with megaloblastic anaemia, neural tube defects in t...
Folic acid plays a critical role in the prevention of chromosome breakage and hypomethylation of DNA...
DNA methylation is an essential mechanism for epigenetic control of genes expression and for mainten...
Folate, together with other B-vitamins, plays a crucial role in epigenetic regulation. Folate-mediat...
In order to maintain normal function and homeostasis, appropriate gene expression is critical in ind...
Advances in molecular biology greatly contributed, in the past decades, to a deeper understanding of...
The C677T polymorphism in the methylenetetrahydrofolate reductase (MTHFR) gene is associated with a ...
Folate is a water-soluble B-vitamin that holds a key position in cell growth and development. By DNA...
Folate derivatives are required for nucleotide/DNA synthesis and DNA methylation. Methylenetetrahydr...
Experimental studies demonstrated that maternal exposure to certain environmental and dietary factor...
Folate deficiency may affect gene expression by disrupting DNA methylation patterns or by inducing b...