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Perinatal hypophosphatasia caused by uniparental isodisomy
Atsushi Watanabe1, Shuhei Satoh2, Atsushi Fujita3
1Division of Clinical Genetics, Nippon Medical School Hospital, Tokyo, Japan; Department of Biochemistry and Molecular Biology, Nippon Medical School, Tokyo, Japan.
Insights
Hypophosphatasia (HPP), a bone disorder, can arise from paternal uniparental isodisomy (UPD) of chromosome 1. This rare genetic event, identified in a Japanese fetus, explains the severe perinatal HPP form.
Area of Science:
- Genetics
- Molecular Biology
- Pediatrics
Background:
- Hypophosphatasia (HPP) is an inherited disorder of bone mineralization due to mutations in the alkaline phosphatase gene (ALPL).
- The severe perinatal form of HPP is a significant skeletal dysplasia, particularly in Japan, often linked to the ALPL mutation c.1559delT.
- Typically, Japanese patients with perinatal HPP are homozygous for c.1559delT, with heterozygous parents.
Observation:
- A fetus diagnosed with perinatal HPP presented with a homozygous c.1559delT mutation.
- Parental genotypes were heterozygous (father) and wild-type (mother), suggesting an atypical inheritance pattern.
- Analysis revealed paternal uniparental isodisomy (UPD) of chromosome 1 as the cause.
Findings:
- This study reports the first instance of perinatal HPP caused by paternal UPD of chromosome 1.
- Genetic analyses, including microsatellite markers and whole-genome arrays, confirmed uniparental inheritance from the father and ruled out deletions or de novo mutations.
- The homozygous c.1559delT mutation in the fetus was inherited solely from the father via UPD.
Implications:
- This finding highlights UPD as a rare but significant mechanism for genetic disorders like HPP.
- It underscores the importance of considering non-Mendelian inheritance patterns, such as UPD, even with known hot spot mutations.
- Determining parental genotypes is crucial for accurate diagnosis and assessing recurrence risk in cases of homozygous mutations, especially in UPD contexts.
Abstract:
Hypophosphatasia (HPP) is an inherited disorder characterized by defective bone mineralization caused by mutations in the alkaline phosphatase gene (ALPL). Clinically, the disease spans a great continuum of disease severity and six forms can be distinguished according to the age of onset. The most severe is the autosomal recessive perinatal form, a major prenatal skeletal dysplasia in Japan. The ALPL mutation c.1559delT causes perinatal HPP and occurs frequently in the Japanese. Most patients with perinatal HPP in Japan are homozygous for c.1559delT, and their parents are usually heterozygous with no evidence of consanguinity. Here we identified a fetus with perinatal HPP resulting from an unusual mechanism known as paternal uniparental isodisomy (UPD) of chromosome 1. Sequence analysis of ALPL in the patient revealed the presence of the homozygous mutation c.1559delT. We suspected UPD because the father and mother were heterozygous and wild type, respectively. Analysis of polymorphic microsatellite markers spanning chromosome 1 and whole-genome arrays revealed a uniparental inheritance from the father and excluded deletions or de novo mutations. This is the first description of perinatal HPP caused by UPD. This report also emphasizes the low recurrence risk of a non-Mendelian inheritance pattern in UPD and the value of determining parental genotypes with homozygous mutations in a patient to confirm whether the condition is caused by UPD or not, even when the mutation is detected as a hot spot, as described in the literature.
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