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Published on: February 21, 2015
Large heterozygous deletion and uniparental disomy masquerading as homozygosity in CHKB gene
Tenghui Wu1,2, Ciliu Zhang1,2, Fang He1,2
1Department of Pediatrics, Xiangya Hospital of Central South University, Changsha, China.
Insights
Two cases of megaconial congenital muscular dystrophy were identified with apparent homozygous CHKB gene mutations. Further analysis revealed large deletions or uniparental disomy, highlighting diagnostic challenges in rare genetic disorders.
Area of Science:
- Genetics
- Molecular Biology
- Neurology
Background:
- Megaconial congenital muscular dystrophy (MCMD) is a rare autosomal recessive disorder.
- CHKB gene mutations are associated with MCMD, with 40 of 49 reported patients showing homozygosity.
Purpose of the Study:
- To investigate the genetic basis of MCMD in two unrelated patients presenting with apparently homozygous CHKB mutations.
- To explore alternative genetic mechanisms that can mimic homozygous mutations in autosomal recessive disorders.
Main Methods:
- Whole exome sequencing was performed on patient and parental DNA.
- Quantitative PCR and single nucleotide polymorphism analysis were used to detect deletions and uniparental disomy.
- CHKB expression levels and mitochondrial morphology were analyzed in patient-derived lymphocytes.
Main Results:
- Two patients with MCMD had apparent homozygous CHKB mutations, but genetic analysis revealed a large deletion in one and paternal uniparental isodisomy in the other.
- Patient 1 exhibited decreased CHKB expression and giant mitochondria in lymphocytes.
- These findings demonstrate that large deletions and uniparental disomy can mask underlying recessive mutations.
Conclusions:
- Giant mitochondria can be detected in non-muscle cells, aiding diagnosis when muscle tissue is unavailable.
- Clinicians must consider uniparental disomy and large deletions as potential causes of apparent homozygous variants in non-consanguineous parents to avoid misdiagnosis of MCMD.
Background:
CHKB mutations have been described in 49 patients with megaconial congenital muscular dystrophy, which is a rare autosomal recessive disorder, of which 40 patients showed homozygosity.
Methods:
Peripheral blood genomic DNA samples were extracted from patients and their parents and were tested by whole exome sequencing. Quantitative PCR was performed to detect deletion. Single nucleotide polymorphism analysis was performed to identify uniparental disomy. Quantitative PCR and western blot were used to measure the expression level of CHKB in patient 1-derived immortalized lymphocytes. Mitochondria were observed in lymphocytes by electron microscopy.
Results:
Two unrelated cases born to non-consanguineous parents were diagnosed with megaconial congenital muscular dystrophy due to apparently homozygous mutations (patient 1: c.225-2A>T; patient 2: c.701C>T) in the CHKB gene using whole exome sequencing. Quantitative PCR revealed that patient 1 had a large deletion encompassing the CHKB gene, inherited from the mother. Single nucleotide polymorphism analysis revealed patient 2 had paternal uniparental isodisomy containing the CHKB gene. In the immortalized lymphocytes from patient 1, decreased expression of CHKB was revealed by quantitative PCR and western blot, and giant mitochondria were observed using electron microscopy.
Conclusion:
We provide a possibility to detect giant mitochondria in other cells when muscle was not available. Moreover, clinicians should be aware that homozygous variants can be masqueraded by uniparental disomy or large deletions in offspring of non-consanguineous parents, and excessive homozygosity may be misdiagnosed.
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