Exploration of the Genetic Architecture of Idiopathic Generalized Epilepsies
Open Access
- 18 October 2006
- Vol. 47 (10) , 1682-1690
- https://doi.org/10.1111/j.1528-1167.2006.00677.x
Abstract
Summary: Purpose: Idiopathic generalized epilepsy (IGE) accounts for ∼20% of all epilepsies and affects about 0.2% of the general population. The etiology of IGE is genetically determined, but the complex pattern of inheritance suggests an involvement of a large number of susceptibility genes. The objective of the present study was to explore the genetic architecture of common IGE syndromes and to dissect out susceptibility loci predisposing to absence or myoclonic seizures. Methods: Genome‐wide linkage scans were performed in 126 IGE‐multiplex families of European origin ascertained through a proband with idiopathic absence epilepsy or juvenile myoclonic epilepsy. Each family had at least two siblings affected by IGE. To search for seizure type–related susceptibility loci, linkage analyses were carried out in family subgroups segregating either typical absence seizures or myoclonic and generalized tonic–clonic seizures on awakening. Results: Nonparametric linkage scans revealed evidence for complex and heterogeneous genetic architectures involving linkage signals at 5q34, 6p12, 11q13, 13q22‐q31, and 19q13. The signal patterns differed in their composition, depending on the predominant seizure type in the families. Conclusions: Our results are consistent with heterogeneous configurations of susceptibility loci associated with different IGE subtypes. Genetic determinants on 11q13 and 13q22‐q31 seem to predispose preferentially to absence seizures, whereas loci on 5q34, 6p12, and 19q13 confer susceptibility to myoclonic and generalized tonic–clonic seizures on awakening.Keywords
This publication has 57 references indexed in Scilit:
- Genetic dissection of the common epilepsiesCurrent Opinion in Neurology, 2006
- Two-dimensional genome-scan identifies novel epistatic loci for essential hypertensionHuman Molecular Genetics, 2006
- Juvenile myoclonic epilepsy subsyndromes: family studies and long-term follow-upBrain, 2006
- Sacred disease secrets revealed: the genetics of human epilepsyHuman Molecular Genetics, 2005
- Malic Enzyme 2 May Underlie Susceptibility to Adolescent-Onset Idiopathic Generalized EpilepsyAmerican Journal of Human Genetics, 2005
- BRD2 (RING3) Is a Probable Major Susceptibility Gene for Common Juvenile Myoclonic EpilepsyAmerican Journal of Human Genetics, 2003
- Comprehensive Human Genetic Maps: Individual and Sex-Specific Variation in RecombinationAmerican Journal of Human Genetics, 1998
- Linkage Thresholds for Two-stage Genome ScansAmerican Journal of Human Genetics, 1998
- Epilepsies in twins: Genetics of the major epilepsy syndromesAnnals of Neurology, 1998
- Genetic dissection of complex traits: guidelines for interpreting and reporting linkage resultsNature Genetics, 1995