European Journal of Pediatrics 1990-07-01

Recurrent, familial Reye-like syndrome with a new complex amino and organic aciduria.

O N Elpeleg, E Christensen, H Hurvitz, D Branski

Index: Eur. J. Pediatr. 149(10) , 709-12, (1990)

Full Text: HTML

Abstract

Five of 13 siblings from a Jewish-Ashkenazi family suffered from recurrent Reye-like episodes. During attacks, these patients excreted alpha-keto-adipic, alpha-hydroxy-adipic, and alpha-aminoadipic acids, branched-chain keto acids and saccharopine in addition to lactic, pyruvic, and dicarboxylic acids characteristic of Reye syndrome. The serum concentrations of citrulline and alpha-amino-adipic acid were elevated and carnitine was at the upper limit of the normal range. Serum acetoacetate level was 4-5 times the beta-hydroxybutyrate level, but the pyruvate/lactate ratio was normal. Notably, plasma ketone bodies were lower than expected from the degree of catabolism. When the patients were symptom-free, no abnormal amino or organic acids in serum or urine were detected. These findings might be interpreted as a functional impairment at three different biochemical sites: fatty acid beta-oxidation, dehydrogenase complexes of the pyruvic, alpha-ketoglutaric, alpha-ketoadipic, and branched-chain keto acids, and pyruvate carboxylase. We suggest that in this hereditary disorder a toxic substance, exogenously or endogenously derived, interfered at multiple sites in different metabolic pathways.


Related Compounds

  • Saccharopine

Related Articles:

Attenuation of autophagic-proteolysis in C2C12 cells by saccharopine.

2015-12-01

[Mol. Cell Biochem. 410 , 93-100, (2015)]

Molecular cloning and expression of human L-pipecolate oxidase.

2000-04-21

[Biochem. Biophys. Res. Commun. 270(3) , 1101-5, (2000)]

Lysine catabolism in Haemonchus contortus and Teladorsagia circumcincta.

2012-05-01

[Exp. Parasitol. 131(1) , 101-6, (2012)]

Potential role for saccharopine reductase in swainsonine metabolism in endophytic fungus, Undifilum oxytropis.

2012-08-01

[Fungal Biol. 116(8) , 902-9, (2012)]

A QM/MM-based computational investigation on the catalytic mechanism of saccharopine reductase.

2011-01-01

[Molecules 16(10) , 8569-89, (2011)]

More Articles...