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  3. Understanding the role of argininosuccinate lyase transcript variants in the clinical and biochemical variability of the urea cycle disorder argininosuccinic aciduria

Understanding the role of argininosuccinate lyase transcript variants in the clinical and biochemical variability of the urea cycle disorder argininosuccinic aciduria

Details
Official URL
http://www.jbc.org/content/288/48/34599.full.pdf+html
Publisher DOI
10.1074/jbc.M113.503128
PubMed ID
24136197
Abstract
Argininosuccinic aciduria (ASA) is an autosomal recessive urea cycle disorder caused by deficiency of argininosuccinate lyase (ASL) with a wide clinical spectrum from asymptomatic to severe hyperammonemic neonatal onset life-threatening courses. We investigated the role of ASL transcript variants in the clinical and biochemical variability of ASA. Recombinant proteins for ASL wild type, mutant p.E189G, and the frequently occurring transcript variants with exon 2 or 7 deletions were (co-)expressed in human embryonic kidney 293T cells. We found that exon 2-deleted ASL forms a stable truncated protein with no relevant activity but a dose-dependent dominant negative effect on enzymatic activity after co-expression with wild type or mutant ASL, whereas exon 7-deleted ASL is unstable but seems to have, nevertheless, a dominant negative effect on mutant ASL. These findings were supported by structural modeling predictions for ASL heterotetramer/homotetramer formation. Illustrating the physiological relevance, the predominant occurrence of exon 7-deleted ASL was found in two patients who were both heterozygous for the ASL mutant p.E189G. Our results suggest that ASL transcripts can contribute to the highly variable phenotype in ASA patients if expressed at high levels. Especially, the exon 2-deleted ASL variant may form a heterotetramer with wild type or mutant ASL, causing markedly reduced ASL activity.
Date Issued
2013-11-29
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
Argininosuccinate Lyase (ASL)
•
Argininosuccinic Aciduria (ASA)
•
Computer Modeling
•
Homomeric/Heterotetrameric Protein
•
Metabolic Diseases
•
Recombinant Protein Expression
•
Transcript Variants
•
Transfection
•
Urea Cycle
Language(s)
en
Author(s)
Hu, Liyan
Pandey, Amit Vikram  
Departement Klinische Forschung, Forschungsgruppe Endokrinologie / Diabetologie / Metabolik (Pädiatrie)  
Eggimann, Sandra
Rüfenacht, Véronique
Möslinger, Dorothea
Nuoffer, Jean-Marc  
Departement Klinische Forschung, Forschungsgruppe Endokrinologie / Diabetologie / Metabolik (Pädiatrie)  
Universitätsinstitut für Klinische Chemie (UKC)  
Häberle, Johannes
Additional Credits
Departement Klinische Forschung, Forschungsgruppe Endokrinologie / Diabetologie / Metabolik (Pädiatrie)  
Universitätsinstitut für Klinische Chemie (UKC)  
Journal
Journal of biological chemistry
Publisher
American Society for Biochemistry and Molecular Biology
ISSN
0021-9258
Project(s)
Pathogenesis of disorders caused by human P450 oxidoreductase mutations  
Access(Rights)
metadata.only
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