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Published on: August 15, 2019
Novel truncating variant in DNA2-related congenital onset myopathy and ptosis suggests genotype-phenotype correlation
1Department of Pediatrics, Division of Genetic Medicine, University of Washington, Seattle, WA, USA; Department of Medicine, Division of Medical Genetics, University of Washington, Seattle, WA, USA.
Abstract:
DNA2 encodes a protein with nuclease, ATPase, and helicase domains, and serves to maintain mitochondrial DNA integrity. Mutations in DNA2 cause autosomal dominant progressive ophthalmoplegia with mitochondrial DNA deletions. This disorder was first reported in four patients with heterozygous, missense mutations in DNA2. Clinical symptoms include limb-girdle and lower extremity weakness, myalgia, and ophthalmoplegia. All had a slowly progressive disease course and did not present for clinical evaluation until the fifth or sixth decade. We report a case of congenital-onset myopathy and ptosis in a child who was found to have a novel DNA2 variant resulting in a premature termination codon (p.Asn568Ilefs*4). Only one other case of a truncating mutation in DNA2 has been reported, and that patient also had early-onset, severe disease. We hypothesize that haploinsufficiency for the DNA2 protein due to truncating mutations results in mitochondrial genome instability and clinical symptoms of early-onset myopathy. Missense mutations that allow for residual protein function lead to a milder clinical phenotype.
Insights
Truncating DNA2 mutations cause early-onset mitochondrial myopathy, while missense mutations lead to milder symptoms. This highlights DNA2
Area of Science:
- Genetics
- Molecular Biology
- Mitochondrial Biology
Background:
- DNA2 protein is crucial for maintaining mitochondrial DNA integrity.
- Mutations in DNA2 are linked to autosomal dominant progressive ophthalmoplegia with mitochondrial DNA deletions.
Observation:
- A novel DNA2 variant causing a premature termination codon was identified in a child with congenital-onset myopathy and ptosis.
- This truncating mutation resulted in a severe, early-onset phenotype, contrasting with milder symptoms from missense mutations.
Findings:
- Haploinsufficiency of DNA2 protein due to truncating mutations leads to mitochondrial genome instability.
- This instability manifests as early-onset myopathy and ptosis.
Implications:
- DNA2 truncating mutations result in severe, early-onset mitochondrial disease.
- The severity of clinical symptoms correlates with the type of DNA2 mutation, with truncating mutations causing more severe disease than missense mutations.
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