In vivo enzyme activity in inborn errors of metabolism

Metabolism. 1990 Aug;39(8):799-807. doi: 10.1016/0026-0495(90)90122-s.

Abstract

Low-dose continuous infusions of [2H5]phenylalanine, [1-13C]propionate, and [1-13C]leucine were used to quantitate phenylalanine hydroxylation in phenylketonuria (PKU, four subjects), propionate oxidation in methylmalonic acidaemia (MMA, four subjects), and propionic acidaemia (PA, four subjects) and leucine oxidation in maple syrup urine disease (MSUD, four subjects). In vivo enzyme activity in PKU, MMA, and PA subjects was similar to or in excess of that in adult controls (range of phenylalanine hydroxylation in PKU, 3.7 to 6.5 mumol/kg/h, control 3.2 to 7.9, n = 7; propionate oxidation in MMA, 15.2 to 64.8 mumol/kg/h, and in PA, 11.1 to 36.0, control 5.1 to 19.0, n = 5). By contrast, in vivo leucine oxidation was undetectable in three of the four MSUD subjects (less than 0.5 mumol/kg/h) and negligible in the remaining subject (2 mumol/kg/h, control 10.4 to 15.7, n = 6). These results suggest that significant substrate removal can be achieved in some inborn metabolic errors either through stimulation of residual enzyme activity in defective enzyme systems or by activation of alternate metabolic pathways. Both possibilities almost certainly depend on gross elevation of substrate concentrations. By contrast, only minimal in vivo oxidation of leucine appears possible in MSUD.

MeSH terms

  • Adult
  • Bicarbonates / metabolism
  • Carbon Isotopes
  • Child
  • Child, Preschool
  • Deuterium
  • Female
  • Humans
  • Hydroxylation
  • Isotope Labeling / methods
  • Leucine / metabolism
  • Male
  • Malonates / metabolism*
  • Maple Syrup Urine Disease / enzymology*
  • Metabolism, Inborn Errors / enzymology*
  • Methylmalonic Acid / metabolism*
  • Oxidation-Reduction
  • Phenylalanine / metabolism
  • Phenylketonurias / enzymology*
  • Propionates / metabolism*
  • Radioisotope Dilution Technique
  • Reference Values
  • Tyrosine / metabolism

Substances

  • Bicarbonates
  • Carbon Isotopes
  • Malonates
  • Propionates
  • Tyrosine
  • Phenylalanine
  • Methylmalonic Acid
  • Deuterium
  • Leucine