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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.
Abstract:
This study presents the clinical findings on seven children from Malta (population 385,000). All of them had early motor delay and a significant degree of cognitive impairment. Diurnal variation of the motor impairments was clear in six out of seven of the subjects and oculogyric crises occurred from an early stage also in six out of the seven. Five out of seven had clear evidence of dystonia but the early picture was dominated by hypotonia in five. Two had early Parkinsonian tremor and chorea was seen in four, although in two this was attributable to the use of L-dopa. Three had early bulbar involvement. In all, although minor motor problems persisted, the response to L-dopa was dramatic and there was a need to balance improvement in dystonia against aggravation of chorea. The majority were not able to walk until they were treated. Increased doses of L-dopa were required in hot weather, to which they were sensitive. Despite a good response of improved motor ability and abolition of oculogyric crises, there was no obvious change in cognitive function with learning remaining in the moderate impairment range. This report widens the phenotype of dopa-responsive motor disorders and the range of young children with primary motor delay (cerebral palsy) who need a clinical trial of L-dopa. All of the subjects had the same novel mutation in the tetrahydrobiopterin pathway involving sepiapterin reductase, and no abnormality in the gene encoding guanosine triphosphate cyclohydrolase 1. Clinically and molecularly the condition shows autosomal recessive inheritance.
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