Novel biallelic variants in MSTO1 associated with mitochondrial myopathy
Laura Schultz-Rogers1, Alejandro Ferrer1, Nikita R Dsouza2
1Center for Individualized Medicine, Mayo Clinic, Rochester, Minnesota 55905, USA.
Abstract:
Mitochondrial disorders are caused by nuclear and mitochondrial pathogenic variants leading to defects in mitochondrial function and cellular respiration. Recently, the nuclear-encoded mitochondrial fusion gene MSTO1 (Misato 1) has been implicated in mitochondrial myopathy and ataxia. Here we report on a 30-yr-old man presenting with a maternally inherited NM_018116.3:c.651C>G, p.F217L missense variant as well as a paternally inherited arr[GRCh37] 1q22(155581773_155706887) × 1 deletion encompassing exons 7-14 of MSTO1 His phenotype included muscle weakness, hypotonia, early motor developmental delay, pectus excavatum, and scoliosis. Testing revealed elevated plasma creatine kinase, and electromyogram results were consistent with longstanding generalized myopathy. These phenotypic features overlap well with previously reported patients harboring biallelic MSTO1 variants. Additionally, our patient presents with dysphagia and restrictive lung disease, not previously reported for MSTO1-associated disorders. The majority of patients with disease-associated variants in MSTO1 present with biallelic variants suggesting autosomal recessive inheritance; however, one family has been reported with a single variant and presumed autosomal dominant inheritance. The pattern of inheritance we observed is consistent with the majority of previous reports suggesting an autosomal recessive disorder. We add to our knowledge of the syndrome caused by variants in MSTO1 and provide additional evidence supporting autosomal recessive inheritance. We also describe phenotypic features not reported in previous cases, although further research is needed to confirm they are associated with defects in MSTO1.
Insights
Mitochondrial disorders can stem from mutations in the MSTO1 gene. This study details a patient with novel symptoms, reinforcing MSTO1 variants as a cause of autosomal recessive mitochondrial disease.
Area of Science:
- Genetics
- Molecular Biology
- Neurology
Background:
- Mitochondrial disorders arise from genetic defects affecting cellular respiration.
- The MSTO1 gene, crucial for mitochondrial fusion, has been linked to mitochondrial myopathy and ataxia.
Observation:
- A 30-year-old male presented with muscle weakness, hypotonia, developmental delay, pectus excavatum, and scoliosis.
- He carried a maternally inherited MSTO1 missense variant and a paternally inherited MSTO1 deletion.
- Elevated creatine kinase and electromyogram findings indicated a generalized myopathy.
Findings:
- The patient's phenotype aligns with previously reported MSTO1-associated disorders.
- New symptoms, including dysphagia and restrictive lung disease, were observed.
- The inheritance pattern supports MSTO1 variants causing an autosomal recessive disorder.
Implications:
- This expands the known clinical spectrum of MSTO1-related mitochondrial disorders.
- It reinforces the role of MSTO1 variants in autosomal recessive inheritance patterns.
- Further research is needed to confirm the association of new symptoms with MSTO1 defects.
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