Adults with RRM2B-related mitochondrial disease have distinct clinical and molecular characteristics

Robert D S Pitceathly1, Conrad Smith, Carl Fratter

  • 1MRC Centre for Neuromuscular Diseases, UCL Institute of Neurology and National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK.

Insights

Mutations in the RRM2B gene cause familial mitochondrial disease, often presenting with neurological issues like myopathy and fatigue in adults. Genetic variations correlate with disease severity and onset age, guiding RRM2B genetic testing.

Area of Science:

  • Genetics
  • Neurology
  • Mitochondrial Biology

Background:

  • Mutations in RRM2B (a nuclear-encoded mitochondrial maintenance gene) are a significant cause of familial mitochondrial disease.
  • RRM2B mutations are the third most common cause of multiple mitochondrial DNA deletions in adults, after POLG and PEO1.
  • The clinical and pathological features of RRM2B-related disease in adults remain incompletely defined.

Purpose of the Study:

  • To define the clinico-pathological and molecular features of RRM2B-related mitochondrial disease in adults.
  • To investigate the correlation between RRM2B genotype and clinical phenotype.
  • To evaluate the utility of specific clinical features in guiding genetic testing for RRM2B.

Main Methods:

  • Multicenter study of 26 adult patients from 22 families with genetically confirmed RRM2B mutations.
  • Inclusion of five additional published cases.
  • Analysis of clinical data, genetic mutations, and skeletal muscle biopsy findings.

Main Results:

  • Extra-ocular neurological complications are common in adults with RRM2B mutations.
  • Myopathy, bulbar dysfunction, and fatigue were prominent manifestations.
  • Recessive compound heterozygous mutations were linked to severe early-onset multisystem disease (mean onset 7 years), while dominant heterozygous mutations showed milder, later-onset myopathic phenotypes (mean onset 46 years).
  • Muscle biopsies revealed mitochondrial accumulation and/or COX-deficient fibers, with universal multiple mitochondrial DNA deletions.
  • Eighteen distinct RRM2B mutations were identified, including five novel ones.

Conclusions:

  • RRM2B mutations present with diverse neurological and systemic features in adults.
  • Clinical presentation correlates strongly with the inheritance pattern and specific RRM2B genotype.
  • Features like bulbar dysfunction, hearing loss, and gastrointestinal issues can prioritize RRM2B genetic testing, potentially avoiding muscle biopsy.

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