Dependence of glycine conjugation on availability of glycine: role of the glycine cleavage system
- 1 January 1993
- journal article
- research article
- Published by Taylor & Francis in Xenobiotica
- Vol. 23 (2) , 141-153
- https://doi.org/10.3109/00498259309059370
Abstract
1. Glycine conjugation of benzoic acid was investigated in anaesthetized rats by measuring the disappearance of benzoate from blood, and the appearance of benzoylglycine in blood and urine. 2. Administration of glycine (1-10 mmol/kg, i.v.) increased the capacity of benzoylglycine formation in a dose-dependent fashion, with a maximal rate (8.1 μmol/kg per min) occurring after administration of 5 mmol/kg glycine. The normal endogenous glycine supply (1.7mM in liver) permits glycine conjugation only at an approximate half-maximal rate (4.5/μmol/kg/per min). 3. The increase in benzoylglycine formation in response to exogenous glycine supply is also a function of the benzoate dosage. Decreased responsiveness at high benzoate dosage indicates that the availability of coenzyme A is another factor that also limits the capacity of glycine conjugation. 4. Cysteamine (200mg/kg, i.p.), a potent inhibitor of the mitochondrial glycine cleavage system, rapidly increased hepatic glycine concentration 2-3-fold without affecting the concentration of the other co-substrates (i.e. coenzyme A and ATP) of glycine conjugation. 5. Administration of cysteamine increased the blood clearance of benzoate by 50%, the appearance of benzoylglycine in blood, and the urinary excretion of benzoylglycine. 6. It is concluded that the activity of glycine cleavage system is an important determinant of glycine supply and, thereby, the capacity of glycine conjugation of xenobiotics.Keywords
This publication has 30 references indexed in Scilit:
- Depletion of Plasma Glycine and Effect of Glycine by Mouth on Salicylate Metabolism During Aspirin OverdoseHuman & Experimental Toxicology, 1990
- The effects of ions on the conjugation of xenobiotics by the aralkyl‐coa and arylacetyl‐coa N‐acyltransferases from bovine liver mitochondriaJournal of Biochemical Toxicology, 1990
- Brain uptake of tryptophan in urease-injected hyperammonemic rats after treatment with benzoate or hippurateBiochemical Medicine and Metabolic Biology, 1986
- An isocratic reverse-phase high-performance liquid chromatographie assay for adenine nucleotides in rat liverJournal of Pharmacological Methods, 1985
- Potentiation by piridoxilate of the synthesis of hippurate from benzoate in isolated rat hepatocytes. An approach to the determination of new pathways of nitrogen excretion in inborn errors of urea synthesisClinica Chimica Acta; International Journal of Clinical Chemistry, 1984
- Hippurate synthesis and ammonia metabolism in isolated hepatocytesBiochemical and Biophysical Research Communications, 1982
- Cysteamine inhibition of [15N]-glycine turnover in cystinosis and of the glycine cleavage system in vitroMetabolism, 1981
- Effects of Cysteamine Therapy in Nephropathic CystinosisNew England Journal of Medicine, 1981
- Post-mortem Survival of Hippuric Acid Formation in Rat and Human Cadaver Tissue SamplesXenobiotica, 1976
- STUDIES ON AMINO ACID METABOLISM. III. PLASMA GLYCINE CONCENTRATION AND HIPPURIC ACID FORMATION FOLLOWING THE INGESTION OF BENZOATE 1Journal of Clinical Investigation, 1948