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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.
Abstract:
Idiopathic infantile arterial calcification (IIAC) is a life-threatening disorder in young infants. Cardiovascular symptoms are usually apparent within the first month of life. The symptoms are caused by calcification of large and medium-sized arteries, including the aorta, coronary arteries, and renal arteries. Most of the patients die by 6 months of age because of heart failure. Recently, homozygous or compound heterozygous mutations for the ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) gene were reported as causative for the disorder. ENPP1 regulates extracellular inorganic pyrophosphate (PPi), a major inhibiter of extracellular matrix calcification. Two Japanese patients with IIAC were studied. One, from first-cousin parents, showed a typical clinical course. The onset in the second patient was late. Both of the patients were clinically compatible for IIAC; arterial calcification was shown, and hypertension was prominent. We sequenced all the exons and exon-intron boundaries of the gene and measured nucleotide pyrophosphohydrolase (NPPH) activity of ENPP1. Homozygous Arg730Stop was detected in the typical IIAC patient. The mutation was a novel nonsense mutation and not detected in 60 healthy controls. His NPPH activity was 4% of normal. On the other hand, the late-onset patient was not shown to have any mutations. NPPH activity in this patient was 70% of normal. We confirmed that ENPP1 was also responsible for the Japanese patient with IIAC. The atypical late-onset phenotype may not be associated with ENPP1 abnormalities. IIAC is considered to be a clinically and genetically heterogeneous disorder.
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