Genetic and enzymatic analysis for two Japanese patients with idiopathic infantile arterial calcification

Chikahiko Numakura1, Makoto Yamada, Daisuke Ariyasu

  • 1Endocrinology and Metabolism Unit, Tokyo Metropolitan Kiyose Children's Hospital, Kiyose, Japan. cnumakur@med.id.yamagata-u.ac.jp

Insights

Idiopathic infantile arterial calcification (IIAC) is a severe infant disorder. ENPP1 gene mutations cause typical IIAC, but atypical cases may have other genetic causes.

Area of Science:

  • Genetics
  • Pediatrics
  • Cardiovascular Medicine

Background:

  • Idiopathic infantile arterial calcification (IIAC) is a rare, fatal condition in infants, characterized by arterial calcification and cardiovascular complications.
  • The ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) gene, crucial for regulating extracellular pyrophosphate and inhibiting calcification, has been implicated in IIAC.
  • Understanding the genetic basis of IIAC is vital for diagnosis and potential therapeutic strategies.

Observation:

  • Two Japanese patients with IIAC were analyzed, one with a typical severe presentation and another with a late-onset, atypical phenotype.
  • Genetic sequencing and nucleotide pyrophosphohydrolase (NPPH) activity assays were performed on both patients.
  • The typical patient had a novel homozygous nonsense mutation (Arg730Stop) in ENPP1, with significantly reduced NPPH activity (4% of normal).

Findings:

  • A homozygous nonsense mutation in the ENPP1 gene was identified as the cause of typical IIAC in a Japanese infant.
  • The late-onset IIAC patient lacked ENPP1 mutations and exhibited near-normal NPPH activity (70%), suggesting alternative genetic factors.
  • These findings confirm ENPP1's role in IIAC and highlight the disorder's genetic heterogeneity.

Implications:

  • The study confirms ENPP1 mutations as a cause of IIAC in Japanese patients.
  • The identification of a late-onset case without ENPP1 mutations underscores the clinical and genetic heterogeneity of IIAC.
  • Further research into the genetic underpinnings of atypical IIAC is warranted for comprehensive diagnosis and management.