Differential effects of 2-oxo acids on pyruvate utilization and fatty acid synthesis in rat brain

JB Clark, JM Land - Biochemical Journal, 1974 - portlandpress.com
JB Clark, JM Land
Biochemical Journal, 1974portlandpress.com
1. The effects of 2-oxo-4-methylpentanoate, 2-oxo-3-methylbutanoate and 2-oxo-3-
methylpentanoate on the activity of pyruvate dehydrogenase (EC 1.2. 4.1), citrate synthase
(EC 4.1. 3.7), acetyl-CoA carboxylase,(EC 6.4. 1.2) and fatty acid synthetase derived from
the brains of 14-day-old rats were investigated. 2. The pyruvate dehydrogenase enzyme
activity was competitively inhibited by 2-oxo-3-methylbutanoate with respect to pyruvate with
a Ki of 2.04 mm but was unaffected by 2-oxo-4-methylpentanoate or 2-oxo-3 …
1. The effects of 2-oxo-4-methylpentanoate, 2-oxo-3-methylbutanoate and 2-oxo-3-methylpentanoate on the activity of pyruvate dehydrogenase (EC 1.2.4.1), citrate synthase (EC 4.1.3.7), acetyl-CoA carboxylase, (EC 6.4.1.2) and fatty acid synthetase derived from the brains of 14-day-old rats were investigated. 2. The pyruvate dehydrogenase enzyme activity was competitively inhibited by 2-oxo-3-methylbutanoate with respect to pyruvate with a Ki of 2.04mm but was unaffected by 2-oxo-4-methylpentanoate or 2-oxo-3-methylpentanoate. 3. The citrate synthase activity was inhibited competitively (with respect to acetyl-CoA) by 2-oxo-4-methylpentanoate (Ki~7.2mm) and 2-oxo-3-methylbutanoate (Ki~14.9mm) but not by 2-oxo-3-methylpentanoate. 4. The acetyl-CoA carboxylase activity was not inhibited significantly by any of the 2-oxo acids investigated. 5. The fatty acid synthetase activity was competitively inhibited (with respect to acetyl-CoA) by 2-oxo-4-methylpentanoate (Ki~930μm) and 2-oxo-3-methylpentanoate (Ki~3.45mm) but not by 2-oxo-3-methylbutanoate. 6. Preliminary experiments indicate that 2-oxo-4-methylpentanoate and 2-oxo-3-phenylpropionate (phenylpyruvate) significantly inhibit the ability of intact brain mitochondria from 14-day-old rats to oxidize pyruvate. 7. The results are discussed with reference to phenylketonuria and maple-syrup-urine disease. A biochemical mechanism is proposed to explain the characteristics of these diseases.
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