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Deep brain stimulation is effective in pediatric patients with GNAO1 associated severe hyperkinesia
Anne Koy1, Sebahattin Cirak2, Victoria Gonzalez3
1Department of Pediatrics, University Hospital Cologne, Germany.
Insights
GNAO1 gene mutations cause severe hyperkinetic movement disorders. Deep brain stimulation of the globus pallidus internus (GPi-DBS) effectively treated life-threatening exacerbations in most patients with these mutations.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- GNAO1 gene mutations are implicated in early infantile epileptic encephalopathy and movement disorders.
- Patients with GNAO1 mutations can experience severe, life-threatening hyperkinetic exacerbations refractory to medication.
Observation:
- Six patients with GNAO1 mutations presented with severe hyperkinetic movement disorders and recurrent exacerbations since early childhood.
- Five of these patients underwent deep brain stimulation of the globus pallidus internus (GPi-DBS).
Findings:
- Genetic analysis identified various GNAO1 mutations, including two novel ones (c.723+1G>T and c.610G>C; p.Gly204Arg).
- GPi-DBS successfully halted severe hyperkinetic exacerbations in five out of six patients.
Implications:
- Whole exome sequencing (WES) can rapidly identify pathogenic genes in complex movement disorders.
- GPi-DBS is a potentially effective and life-saving treatment for GNAO1-related movement disorders and should be considered early.
Background:
Exacerbation of hyperkinesia is a life-threatening complication of dyskinetic movement disorders, which can lead to multi-organ failure and even to death. GNAO1 has been recently identified to be involved in the pathogenesis of early infantile epileptic encephalopathy and movement disorders. Patients with GNAO1 mutations can present with a severe, progressive hyperkinetic movement disorder with prolonged life-threatening exacerbations, which are refractory to most anti-dystonic medication.
Objective:
The objective was to investigate the evolution of symptoms and the response to deep brain stimulation of the globus pallidus internus (GPi-DBS) in patients with different GNAO1 mutations.
Methods:
We report six patients presenting with global motor retardation, reduced muscle tone and recurrent episodes of severe, life-threatening hyperkinesia with dystonia, choreoathetosis, and ballism since early childhood. Five of them underwent GPi-DBS.
Results:
The genetic workup revealed mutations in GNAO1 for all six patients. These encompass a new splice site mutation (c.723+1G>T) in patient 1, a new missense mutation (c.610G>C; p.Gly204Arg) in patient 2, a heterozygous mutation (c.625>T; p.Arg209Cys) in patients 3 and 4, and a heterozygous mutation (c.709G>A; p.Glu237Lys) in patients 5 and 6. By intervention with GPi-DBS the severe paroxysmal hyperkinetic exacerbations could be stopped in five patients. One patient is still under evaluation for neuromodulation.
Conclusion:
In complex movement disorders of unsolved etiology clinical WES can rapidly streamline pathogenic genes. We identified two novel GNAO1 mutations. GPi-DBS can be an effective and life-saving treatment option for patients with GNAO1 mutations and has to be considered early.
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