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.

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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