Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0003969 (vitamin C deficiency)
625 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The activity of the red blood cell enzymes transketolase, glutathione reductase, and aspartate transaminase, and their activation by the coenzymes thiamine, riboflavin, and pyridoxine, the pyruvate tolerance test, the leucocyte vitamin C concentration, and the activity in serum of gamma-glutamyl transferase were measured in a series of 35 patients with alcohol-related illness. The incidence of thiamine deficiency was 31% as assessed by the activation of transketolase, and 55% as assessed by the pyruvate tolerance test. The incidence of riboflavin deficiency was 23% and of ascorbic acid deficiency 91%. No cases of pyridoxine deficiency were detected. The pyruvate tolerance test was found to be a more sensitive test of thiamine deficiency than the transketolase activation, and the activation of red blood cell aspartate transaminase was found to be a poor indicator of pyridoxine deficiency. There was a poor correlation of the gamma-glutamyl transferase activity with the degree of vitamin deficiency, suggesting that alcohol exposure is only partly responsible for the observed vitamin deficiency.
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PMID:Detection and incidence of B and C vitamin deficiency in alcohol-related illness. 3 28

Among nutrients, the role of water-soluble vitamins as genetic expression modulators has not been exhaustively stu-died. Relevant information is shown herein on the present state of the art in this field. For example, vitamin C deficiency leads to a decrease in mRNA levels of apolipoprotein A1 (Apo A1) in liver. Biotin participates in the regulation, both at mRNA and protein level, of the enzymes that participate in its own metabolic cycle and of enzymes that contribute to glucose metabolism. Thiamine regulates the expression of some genes that code for enzymes using thiamine diphosphate as cofactor. Thiamine deficiency diminishes the mRNA levels of transketolase and pyruvate dehydrogenase. It has been shown in riboflavin-deficient rats that FAD regulates some acetyl CoA dehydrogenases, producing a marked increase in mRNA levels. Nicotinamide positively regulates glyceraldehyde-3-phosphate dehydrogenase when NADH is added. Vitamin B6 modulates the expression of a variety of genes that respond to hormones. Vitamin B12 increases concentrations of the enzymatic protein methionine synthetase and doe not affect mRNA levels, which implies that this protein is regulated by its cofactor post-transcriptionally. Most mechanisms involved in these regulation examples are not known, which opens new research areas for the future.
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PMID:[Importance of water-soluble vitamins as regulatory factors of genetic expression]. 1199 11