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Published on: November 28, 2019
A relatively mild phenotype associated with mutation of SCN8A
Irene Bagnasco1, Patrizia Dassi1, Roberta Blé1
1Division of Child Neuropsychiatry, Martini Hospital, via Tofane 71, 10141 Torino, Italy.
Insights
SCN8A gene mutations are linked to epilepsy. A novel de novo mutation in a young girl presented a milder phenotype than previously reported, suggesting potential genetic modifiers influence.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- SCN8A gene mutations are associated with severe infantile epilepsy and developmental delay.
- Recent studies indicate milder phenotypes in patients with autosomal dominant heterozygous SCN8A mutations.
Observation:
- A 6-year-old girl presented with a family history of epilepsy, tremor, ataxia, and mild motor delay, but normal cognition.
- Neuroradiological and waking EEG studies were normal; however, epileptiform abnormalities emerged during sleep.
Findings:
- The patient harbors a de novo SCN8A gene mutation (c.3943G>A, p.Val1315Met) in domain III.
- This specific mutation has been previously linked to epileptic encephalopathy in two other reported cases.
Implications:
- This case expands the known clinical spectrum of SCN8A mutations, highlighting a milder phenotype.
- The findings suggest potential genetic modifier effects, such as other gene mutations or mosaicism, influencing disease severity.
- Further genetic investigations are recommended to understand the variability in SCN8A-related epilepsy phenotypes.
Abstract:
Mutations in SCN8A gene have been described in relation to infantile onset epilepsy with movement disorders and developmental delay. Recently various authors have reported patients carrying autosomal dominant heterozygous SCN8A mutations and a milder phenotype expression. We discuss the case of a 6-year-old girl with a positive family history for epilepsy, early benign focal epilepsy, well controlled by Carbamazepine, upper limb tremor since birth, ataxia, slight motor delay and normal cognitive development. Neuroradiological study is normal, waking EEGs are normal, while epileptiform abnormalities on the vertex appear during sleep. The girl carries a de novo mutation of the SCN8A gene with nucleotide substitution of c.3943G > A (p.Val 1315 Met), located in the domain III S4/S5 intracellular linker. In literature two other cases with the same mutation have been reported, both patients have an epileptic encephalopathy. Our patient's milder phenotype could be caused by a modifier effect, possibly a mutation in another gene or a mosaicism. The detailed description of our case should contribute to enlarging the description of the clinical features of SCN8A mutations and to recommending the deepening of genetic investigations to.
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