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Mutation in PHACTR1 associated with multifocal epilepsy with infantile spasms and hypsarrhythmia
Andrey V Marakhonov1, Magdalena Přechová2,3, Fedor A Konovalov4
1Laboratory of Genetic Epidemiology, Laboratory of Functional Genomics, Department of Genetic Counseling, Research Centre for Medical Genetics, Moscow, Russia.
Insights
A novel mutation in the PHACTR1 gene causes severe infantile epilepsy. This discovery links PHACTR1 to neurological disorders, opening new avenues for epilepsy research and treatment.
Area of Science:
- Genetics and Molecular Biology
- Neuroscience
Background:
- Infantile spasms and hypsarrhythmia are severe epilepsy syndromes in infants.
- Whole-exome sequencing is a powerful tool for identifying genetic causes of epilepsy.
Observation:
- A young boy with multifocal epilepsy presented with infantile spasms and hypsarrhythmia.
- Whole-exome sequencing identified a de novo heterozygous missense variant, p.L519R, in the PHACTR1 gene.
Findings:
- The identified PHACTR1 mutation (p.L519R) alters protein function by reducing G-actin affinity and increasing PP1 complex formation.
- These functional changes lead to altered subcellular localization and increased cytoskeletal rearrangements, suggesting a role in neuronal function.
Implications:
- This study identifies PHACTR1 as a novel gene associated with human epilepsy, specifically a severe form of sporadic multifocal epilepsy.
- The findings provide a molecular basis for the patient's condition and suggest PHACTR1's involvement in neuronal excitability and differentiation.
- Understanding PHACTR1's role in cytoskeletal dynamics and its link to Slack channelopathies may offer new therapeutic targets for epilepsy.
Abstract:
A young boy with multifocal epilepsy with infantile spasms and hypsarrhythmia with minimal organic lesions of brain structures underwent DNA diagnosis using whole-exome sequencing. A heterozygous amino-acid substitution p.L519R in a PHACTR1 gene was identified. PHACTR1 belongs to a protein family of G-actin binding protein phosphatase 1 (PP1) cofactors and was not previously associated with a human disease. The missense single nucleotide variant in the proband was shown to occur de novo in the paternal allele. The mutation was shown in vitro to reduce the affinity of PHACTR1 for G-actin, and to increase its propensity to form complexes with the catalytic subunit of PP1. These properties are associated with altered subcellular localization of PHACTR1 and increased ability to induce cytoskeletal rearrangements. Although the molecular role of the PHACTR1 in neuronal excitability and differentiation remains to be defined, PHACTR1 has been previously shown to be involved in Slack channelopathy pathogenesis, consistent with our findings. We conclude that this activating mutation in PHACTR1 causes a severe type of sporadic multifocal epilepsy in the patient.
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