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Published on: August 20, 2019
Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative
Selma L van Esveld1, Richard J Rodenburg2, Fathiya Al-Murshedi3
1Radboud Center for Mitochondrial Medicine & Center for Molecular and Biomolecular Informatics, Radboud Institute for Molecular Life Sciences, Nijmegen, The Netherlands.
Abstract:
SUPV3L1 encodes a helicase that is mainly localized in the mitochondria. It has been shown in vitro to possess both double-stranded RNA and DNA unwinding activity that is ATP-dependent. Here we report the first two patients for this gene who presented with a homozygous preliminary stop codon resulting in a C-terminal truncation of the SUPV3L1 protein. They presented with a characteristic phenotype of neurodegenerative nature with progressive spastic paraparesis, growth restriction, hypopigmentation, and predisposition to autoimmune disease. Ophthalmological examination showed severe photophobia with corneal erosions, optic atrophy, and pigmentary retinopathy, while neuroimaging showed atrophy of the optic chiasm and the pons with calcification of putamina, with intermittent and mild elevation of lactate. We show that the amino acids that are eliminated by the preliminary stop codon are highly conserved and are predicted to form an amphipathic helix. To investigate if the mutation causes mitochondrial dysfunction, we examined fibroblasts of the proband. We observed very low expression of the truncated protein, a reduction in the mature ND6 mRNA species as well as the accumulation of double-stranded RNA. Lentiviral complementation with the full-length SUPV3L1 cDNA partly restored the observed RNA phenotypes, supporting that the SUPV3L1 mutation in these patients is pathogenic and the cause of the disease.
Insights
Mutations in the SUPV3L1 gene cause a severe neurodegenerative disorder. This study identifies two patients with a SUPV3L1 gene mutation leading to mitochondrial dysfunction and a distinct clinical presentation.
Area of Science:
- Genetics and Molecular Biology
- Neuroscience
- Mitochondrial Biology
Background:
- The SUPV3L1 gene encodes a mitochondrial helicase with RNA and DNA unwinding capabilities.
- Mitochondrial dysfunction is implicated in various neurodegenerative diseases.
Observation:
- Two patients presented with a homozygous premature stop codon in SUPV3L1, leading to a truncated protein.
- Clinical features included progressive spastic paraparesis, growth restriction, hypopigmentation, autoimmune predisposition, and specific ophthalmological and neuroimaging findings.
Findings:
- The eliminated amino acids in the truncated SUPV3L1 protein are highly conserved and predicted to form an amphipathic helix.
- Patient fibroblasts showed reduced SUPV3L1 expression, decreased mature ND6 mRNA, and double-stranded RNA accumulation.
- Lentiviral complementation partially restored RNA processing, confirming the pathogenicity of the SUPV3L1 mutation.
Implications:
- This study establishes SUPV3L1 mutations as a cause of a novel neurodegenerative syndrome.
- Understanding the role of SUPV3L1 in mitochondrial RNA processing is crucial for disease pathogenesis.
- This finding opens avenues for potential therapeutic strategies targeting mitochondrial dysfunction in related disorders.
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