Sepiapterin reductase deficiency: a congenital dopa-responsive motor and cognitive disorder

B G R Neville1, R Parascandalo, R Farrugia

  • 1Neurosciences Unit, Institute of Child Health (UCL), London, UK. b.neville@ich.ucl.ac.uk

Insights

This study identifies a novel genetic mutation causing early motor delay and cognitive impairment in children. L-dopa treatment dramatically improved motor function but not cognitive deficits, highlighting a treatable cause of cerebral palsy.

Area of Science:

  • Genetics
  • Neuroscience
  • Pediatrics

Background:

  • Dopa-responsive motor disorders are rare genetic conditions.
  • Early motor delay and cognitive impairment can present with complex phenotypes.

Observation:

  • Seven children from Malta presented with early motor delay and cognitive impairment.
  • Clinical features included diurnal motor variations, oculogyric crises, dystonia, hypotonia, Parkinsonian tremor, and bulbar involvement.
  • Sensitivity to heat and variable responses to L-dopa were noted, requiring careful management.

Findings:

  • A novel mutation in the sepiapterin reductase gene within the tetrahydrobiopterin pathway was identified in all subjects.
  • L-dopa treatment led to dramatic motor improvements, including the ability to walk and resolution of oculogyric crises.
  • Cognitive function remained impaired despite motor improvements, indicating a dissociation between motor and cognitive recovery.

Implications:

  • This study expands the known phenotype of dopa-responsive motor disorders.
  • It suggests a clinical trial of L-dopa for young children with primary motor delay and suspected cerebral palsy.
  • The findings underscore the importance of genetic testing for early-onset motor and cognitive impairments.

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