ACETYL COA CARBOXYLASE IN CULTURED FIBROBLASTS - DIFFERENTIAL BIOTIN DEPENDENCE IN THE 2 TYPES OF BIOTIN-RESPONSIVE MULTIPLE CARBOXYLASE DEFICIENCY
- 1 January 1984
- journal article
- research article
- Vol. 36 (1) , 80-92
Abstract
In biotin-responsive multiple carboxylase deficiency, a characteristic organic aciduria reflects in vivo deficiency of mitochondrial propionyl CoA carboxylase, 3-methylcrotonyl CoA carboxylase and pyruvate carboxylase. A possible primary or secondary defect in biotin absorption leads to an infantile-onset syndrome, while abnormal holocarboxylase synthetase activity was identified in the neonatal-onset form. While distinct mitochondrial and cytosolic holocarboxylase synthetase biotinylation systems may exist in avian tissues, the system has not been characterized in humans. Toward this objective, the biotin dependence of a cytosolic carboxylase, acetyl CoA carboxylase (ACC), was studied in cultured [human] skin fibroblasts of both types of multiple carboxylase deficiency. ACC specific activities in control and infantile-onset cells were not distinguishable at all biotin concentrations: with decreasing biotin availability (+ avidin), there were only modest decrements in ACC activity in both these cell types. In contrast, there were pronounced declines of ACC activity in neonatal-onset (holocarboxylase synthetase-deficient) cells after growth in low biotin concentrations, and activity was undetectable in + avidin. ACC activity was rapidly restored with biotin repletion to biotin-starved holocarboxylase synthetase-deficient cells, and this restoration was largely independent of protein synthesis. The behavior of the cytosolic carboxylase, ACC, is in all these respects identical to that of the mitochondrial carboxylases, an observation consistent with the existence of similar biotinylation mechanisms in the 2 cell compartments. At least some components of the holocarboxylase synthetase system are shared by mitochondria and cytosol in humans, and are consistent with the suggestion that restoration of activity in biotin-depleted cells represents biotinylation of preexisting enzyme protein. The modest decrements in ACC activity in normal and infantile-onset cells may be related to the compromised epidermal integrity observed in that form of multiple carboxylase deficiency. Finally, ACC and mitochondrial carboxylase activities were compared in cells from mutants representing a spectrum of clinical severity. Cells from later-onset patients of intermediate clinical severity were ultimately classifiable as putative holocarboxylase synthetase-deficient cells on chemical criteria. Accurate etiologic classification cannot be based on clinical presentation alone, and biochemical studies should be performed on all patients. Accordingly, a classification of multiple carboxylase deficiency is proposed, based on biochemical criteria.This publication has 40 references indexed in Scilit:
- Mutant holocarboxylase synthetase: evidence for the enzyme defect in early infantile biotin-responsive multiple carboxylase deficiency.Journal of Clinical Investigation, 1981
- Synthesis of Acetyl Coenzyme A Holocarboxylase in Vitro by a Cytosolic Preparation from Chicken LiverExperimental Biology and Medicine, 1974
- The identification of tiglylglycine in the urine of a child with β-methylcrotonylgeycinuriaClinica Chimica Acta; International Journal of Clinical Chemistry, 1972
- BIOTIN-RESPONSIVE β-METHYLCROTONYLGLYCINURIAThe Lancet, 1971
- Effects of Magnesium Ions, Adenosine Triphosphate, Palmitoylcarnitine, and Palmitoyl Coenzyme A on Acetyl Coenzyme A CarboxylaseJournal of Biological Chemistry, 1968
- Liver acetyl coenzyme A carboxylase. I. Isolation and cat- alytic properties.1968
- The effect of univalent cations of activities catalyzed bovine-liver propionyl-CoA carboxylaseBiochimica et Biophysica Acta (BBA) - Enzymology, 1967
- The Enzymatic Synthesis of Propionyl Coenzyme A Holocarboxylase from d-Biotinyl 5'-Adenylate and the ApocarboxylaseJournal of Biological Chemistry, 1965
- The Mechanism of Tricarboxylic Acid Cycle Regulation of Fatty Acid SynthesisJournal of Biological Chemistry, 1962
- PROPIONYL HOLOCARBOXYLASE SYNTHESIS .1. PREPARATION AND PROPERTIES OF ENZYME SYSTEM1962