Abstract

Deficiency of argininosuccinate lyase (ASL) causes argininosuccinic aciduria, an urea cycle defect that may present with a severe neonatal onset form or with a late onset phenotype. To date phenotype-genotype correlations are still not clear because biochemical assays of ASL activity correlate poorly with clinical severity in patients. We employed a yeast-based functional complementation assay to assess the pathogenicity of 12 missense ASL mutations, to establish genotype-phenotype correlations, and to screen for intragenic complementation. Rather than determining ASL enzyme activity directly, we have measured the growth rate in arginine-free medium of a yeast ASL(null) strain transformed with individual mutant ASL alleles. Individual haploid strains were also mated to obtain diploid, "compound heterozygous" yeast. We show that the late onset phenotypes arise in patients because they harbor individual alleles retaining high residual enzymatic activity or because of intragenic complementation among different mutated alleles. In these cases complementation occurs because in the hybrid tetrameric enzyme at least one active site without mutations can be formed or because the differently mutated alleles can stabilize each other, resulting in partial recovery of enzymatic activity. Functional complementation in yeast is simple and reproducible and allows the analysis of large numbers of mutant alleles. Moreover, it can be easily adapted for the analysis of mutations in other genes involved in urea cycle disorders.

Highlights

  • 28926 JOURNAL OF BIOLOGICAL CHEMISTRY similar catalytic mechanism

  • argininosuccinate lyase (ASL) participates to the urea cycle, and in humans it is essential for ammonia detoxification, whereas in lower organisms it is required for the biosynthesis of arginine

  • We checked whether the human ASL gene (hASL) gene could complement our haploid yeast null mutant ⌬ARG4, a derivative of the BY4741 strain that harbors a deletion of the ARG4 gene and is auxotrophic for arginine (Table 2)

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Summary

Introduction

28926 JOURNAL OF BIOLOGICAL CHEMISTRY similar catalytic mechanism. The tetrameric structure of ASL accounts for the phenomenon of intragenic complementation. We measured ASL enzymatic activity in strains expressing each of these three mutations and in controls transformed with the wild type human gene, grown in SM-URA medium with 2% galactose.

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