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PRRT2 gene variant in a child with dysmorphic features, congenital microcephaly, and severe epileptic seizures:
Piero Pavone1, Giovanni Corsello2, Sung Yoon Cho3
1Department of Pediatrics, University-Hospital "Policlinico-Vittorio Emanuele", University of Catania, Via Santa Sofia 78, 95124, Catania, Italy. ppavone@unict.it.
Insights
Mutations in the Proline-rich Transmembrane Protein 2 (PRRT2) gene can cause severe neurological disorders. This case highlights a PRRT2 variant associated with microcephaly and epilepsy, suggesting a broader clinical spectrum and potential modifying factors.
Area of Science:
- Neurogenetics
- Molecular Neurology
Background:
- Proline-rich Transmembrane Protein 2 (PRRT2) gene mutations are linked to infantile epilepsy and dyskinetic disorders.
- PRRT2 protein functions in pre-synaptic neurons, modulating neurotransmitter release and neuronal excitability.
- Clinical presentations of PRRT2-related disorders exhibit significant variability.
Observation:
- A child presented with congenital microcephaly, intellectual disability, and drug-resistant epileptic encephalopathy.
- Diagnostic exome sequencing identified a PRRT2 gene variant (c.501C>T; p.Thr167Ile) of unknown significance (VUS).
- The same PRRT2 variant was found in the unaffected father.
Findings:
- The severe phenotype in the child is unusual for the identified PRRT2 missense substitution.
- This case expands the known clinical spectrum associated with PRRT2 variants.
- The presence of the variant in an unaffected parent suggests the influence of modifying factors.
Implications:
- Further research is needed to understand the precise role of PRRT2 variants in neurological disorders.
- Identifying modifying factors could lead to better prediction and management of PRRT2-related conditions.
- This case underscores the importance of considering genetic variants of unknown significance in complex neurological phenotypes.
Background:
Mutations in Proline-rich Transmembrane Protein 2 (PRRT2) have been primarily associated with individuals presenting with infantile epilepsy, including benign familial infantile epilepsy, benign infantile epilepsy, and benign myoclonus of early infancy, and/or with dyskinetic paroxysms such as paroxysmal kinesigenic dyskinesia, paroxysmal non-kinesigenic dyskinesia, and exercise-induced dyskinesia. However, the clinical manifestations of this disorder vary widely. PRRT2 encodes a protein expressed in the central nervous system that is mainly localized in the pre-synaptic neurons and is involved in the modulation of synaptic neurotransmitter release. The anomalous function of this gene has been proposed to cause dysregulation of neuronal excitability and cerebral disorders.
Case Presentation:
We hereby report on a young child followed-up for three years who presents with a spectrum of clinical manifestations such as congenital microcephaly, dysmorphic features, severe intellectual disability, and drug-resistant epileptic encephalopathy in association with a synonymous variant in PRRT2 gene (c.501C > T; p.Thr167Ile) of unknown clinical significance variant (VUS) revealed by diagnostic exome sequencing.
Conclusion:
Several hypotheses have been advanced on the specific role that PRRT2 gene mutations play to cause the clinical features of affected patients. To our knowledge, the severe phenotype seen in this case has never been reported in association with any clinically actionable variant, as the missense substitution detected in PRRT2 gene. Intriguingly, the same mutation was reported in the healthy father: the action of modifying factors in the affected child may be hypothesized. The report of similar observations could extend the spectrum of clinical manifestations linked to this mutation.
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