Abstract
Halofenate-free acid (HFA) inhibited the growth of Saccharomyces cerevisiae by 50% at a concentration of 0.34 mm. This inhibitory effect was prevented by addition of either oleate or acetate, but not by pyruvate. When cell growth was supported by oleate, HFA inhibited the incorporation of radioactive carbon from glucose-U-(14)C or pyruvate-2-(14)C into fatty acids and sterols. The incorporation of radioactive carbon into fatty acids and sterols from acetate-2-(14)C was unaffected by the compound. When cell growth was supported by either oleate or acetate, HFA inhibited the conversion of pyruvate-1-(14)C to (14)CO(2). These results suggest that HFA inhibits the conversion of pyruvate to acetate in yeast. Partially purified yeast pyruvate dehydrogenase was inhibited 50% by 5.5 mm HFA; however, the concentration required for 50% inhibition was considerably reduced when the enzyme was preincubated with the compound at room temperature. In a similar manner, the hypolipidemic agent clofibrate-free acid inhibited the growth of yeast by 50% at 3.0 mm. This inhibition was also prevented by acetate and not by pyruvate. In addition, clofibrate-free acid inhibited partially purified pyruvate dehydrogenase by 50% at a concentration of 37.0 mm.
MeSH Terms
Acetates/metabolism
Carbon Dioxide/biosynthesis
Carbon Isotopes
Chromatography, Gas
Clofibrate/pharmacology
Fatty Acids/biosynthesis
Glucose/metabolism
Glycolates/pharmacology
Halofenate/pharmacology
Hypolipidemic Agents/pharmacology
Lipids/biosynthesis
Mass Spectrometry
Oleic Acids/metabolism
Pyruvate Oxidase/antagonists & inhibitors
Pyruvates/metabolism
Saccharomyces cerevisiae/drug effects,enzymology,growth & development,metabolism
Sterols/biosynthesis
Chemicals
Acetates
Carbon Isotopes
Fatty Acids
Glycolates
Hypolipidemic Agents
Lipids
Oleic Acids
Pyruvates
Sterols
Carbon Dioxide
Pyruvate Oxidase
Clofibrate
Glucose
Halofenate
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Greenspan M D
Germershausen J I
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16 references, click to expand
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