High sodium chloride intake decreases betaine-homocysteineS-methyltransferase expression in guinea pig liver and kidney
Open Access
- 1 January 2005
- journal article
- Published by American Physiological Society in American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
- Vol. 288 (1) , R182-R187
- https://doi.org/10.1152/ajpregu.00406.2004
Abstract
Betaine-homocysteine S-methyltransferase (BHMT) is the only enzyme known to catabolize betaine. In addition to being a substrate for BHMT, betaine also functions as an osmoprotectant that accumulates in the kidney medulla under conditions of high extracellular osmolarity. The mechanisms that regulate the partitioning of betaine between its use as a methyl donor and its accumulation as an osmoprotectant are not completely understood. The aim of this study was to determine whether BHMT expression is regulated by salt intake. This report shows that guinea pigs express BHMT in the liver, kidney, and pancreas and that the steady-state levels of BHMT mRNA in kidney and liver decrease 68% and 93% in guinea pigs consuming tap water containing high levels of salt compared with animals provided untreated tap water. The animals consuming the salt water also had ∼50% less BHMT activity in the liver and kidney, and steady-state protein levels decreased ∼30% in both organs. Pancreatic BHMT activity and protein levels were unaffected by the high salt treatment. The complex mechanisms involved in the downregulation of hepatic and renal BHMT expression in guinea pigs drinking salt water remain to be clarified, but the physiological significance of this downregulation may be to expedite the transport and accumulation of betaine into the kidney medulla under conditions of high extracellular osmolarity.Keywords
This publication has 29 references indexed in Scilit:
- Crystal Structure of Rat Liver Betaine Homocysteine S-Methyltransferase Reveals New Oligomerization Features and Conformational Changes Upon Substrate BindingJournal of Molecular Biology, 2004
- Dissecting the Catalytic Mechanism of Betaine−Homocysteine S-Methyltransferase by Use of Intrinsic Tryptophan Fluorescence and Site-Directed MutagenesisBiochemistry, 2004
- Active-site-mutagenesis study of rat liver betaine-homocysteine S-methyltransferaseBiochemical Journal, 2003
- Organic Osmolyte Transport in Quiescent and Activated Rat Hepatic Stellate Cells (Ito Cells)Hepatology, 1999
- Homocystinuria — The Effects of Betaine in the Treatment of Patients Not Responsive to PyridoxineNew England Journal of Medicine, 1983
- Choline dehydrogenaseBiochemical Pharmacology, 1981
- Labile methyl group balances in the human: The role of sarcosineMetabolism, 1980
- ACTIVITIES OF SOME ENZYMES INVOLVED IN HOMOCYSTEINE METHYLATION IN BRAIN, LIVER AND KIDNEY OF THE DEVELOPING RHESUS MONKEYJournal of Neurochemistry, 1976
- Labile methyl balances for normal humans on various dietary regimensMetabolism, 1975
- Betaine-Homocysteine-Methyl-Transferases. I. Distribution in Nature.Acta Chemica Scandinavica, 1960