The first report of Japanese patients with asparagine synthetase deficiency

Brain Dev. 2017 Mar;39(3):236-242. doi: 10.1016/j.braindev.2016.09.010. Epub 2016 Oct 12.

Abstract

Background: Asparagine synthetase (ASNS) deficiency was recently discovered as a metabolic disorder of non-essential amino acids, and presents as severe progressive microcephaly, intellectual disorder, dyskinetic quadriplegia, and intractable seizures.

Methods: Two Japanese children with progressive microcephaly born to unrelated patients were analyzed by whole exome sequencing and novel ASNS mutations were identified. The effects of the ASNS mutations were analyzed by structural evaluation and in silico predictions.

Results: We describe the first known Japanese patients with ASNS deficiency. Their clinical manifestations were very similar to reported cases of ASNS deficiency. Progressive microcephaly was noted during the prenatal period in patient 1 but only after birth in patient 2. Both patients had novel ASNS mutations: patient 1 had p.L145S transmitted from his mother and p.L247W which was absent from his mother, while patient 2 carried p.V489D and p.W541Cfs*5, which were transmitted from his mother and father, respectively. Three of the four mutations were predicted to affect protein folding, and in silico analyses suggested that they would be pathogenic.

Conclusion: We report the first two Japanese patients with ASNS deficiency. Disease severity appears to vary among patients, as is the case for other non-essential amino acid metabolic disorders.

Keywords: Asparagine synthetase deficiency; Cerebral atrophy; Developmental delay; Intractable seizures; Microcephaly; Non-essential amino acid metabolic disorder.

Publication types

  • Case Reports

MeSH terms

  • Asian People
  • Aspartate-Ammonia Ligase / deficiency*
  • Genetic Predisposition to Disease*
  • Humans
  • Infant
  • Infant, Newborn
  • Intellectual Disability / diagnosis
  • Intellectual Disability / genetics*
  • Male
  • Microcephaly / genetics*
  • Microcephaly / pathology
  • Mutation / genetics*
  • Pedigree

Substances

  • Aspartate-Ammonia Ligase