Mutations of Neuronal Voltage‐gated Na+ Channel α1 Subunit Gene SCN1A in Core Severe Myoclonic Epilepsy in Infancy (SMEI) and in Borderline SMEI (SMEB)
Open Access
- 26 January 2004
- Vol. 45 (2) , 140-148
- https://doi.org/10.1111/j.0013-9580.2004.15103.x
Abstract
Summary: Purpose: Severe myoclonic epilepsy in infancy (SMEI) is a distinct epilepsy syndrome. Patients with borderline SMEI (SMEB) are a subgroup with clinical features similar to those of core SMEI but are not necessarily consistent with the accepted diagnostic criteria for core SMEI. The aim of this study was to delineate the genetic correlation between core SMEI and SMEB and to estimate the frequency of mutations in both phenotypes. Methods: We examined 96 healthy volunteers and 58 unrelated individuals whose clinical features were consistent with either core SMEI (n = 31) or SMEB (n = 27). We screened for genetic abnormalities within exons and their flanking introns of the genes encoding major subunits of the Na+ channels (SCN1A, SCN2A, SCN1B, and SCN2B) by using a direct sequencing method. Results: In both core SMEI and SMEB, various mutations of SCN1A including nonsense and missense mutations were identified, whereas no mutations of SCN2A, SCN1B, and SCN2B were found within the regions examined. All mutations were heterozygous and not found in 192 control chromosomes. Mutations were identified in 26 (44.8%) of the 58 individuals and were more frequent (p < 0.05) in core SMEI (19 of 31) than in SMEB (seven of 27), as assessed by the continuity‐adjusted χ2 test. Mutations resulting in a molecular truncation were found only in core SMEI. Among the mutations, two missense mutations were found in both core SMEI and SMEB. Conclusions: Our findings confirm that SMEB is part of the SMEI spectrum and may expand the recognition of SMEI and suggest other responsible or modifying genes.Keywords
This publication has 18 references indexed in Scilit:
- Genetics of epilepsy: current status and perspectivesNeuroscience Research, 2002
- Significant correlation of the SCN1A mutations and severe myoclonic epilepsy in infancyBiochemical and Biophysical Research Communications, 2002
- Frequent mutations of SCN1A in severe myoclonic epilepsy in infancyNeurology, 2002
- Severe myoclonic epilepsy in infants – a review based on the Tokyo Women's Medical University series of 84 casesBrain & Development, 2001
- Na
v
1.1 mutations cause febrile seizures associated with afebrile partial seizuresNeurology, 2001
- Severe Myoclonic Epilepsy of Infancy: Extended Spectrum of GEFS+?Epilepsia, 2001
- De Novo Mutations in the Sodium-Channel Gene SCN1A Cause Severe Myoclonic Epilepsy of InfancyAmerican Journal of Human Genetics, 2001
- A missense mutation of the Na + channel α II subunit gene Na v 1.2 in a patient with febrile and afebrile seizures causes channel dysfunctionProceedings of the National Academy of Sciences, 2001
- Proposal for Revised Classification of Epilepsies and Epileptic SyndromesEpilepsia, 1989
- Severe myoclonic epilepsy of infancyPediatric Neurology, 1987