Genes and molecular mechanisms involved in the epileptogenesis of idiopathic absence epilepsies
SEIZURE-EUROPEAN JOURNAL OF EPILEPSY
Authors: Yalcin, Ozlem
Abstract
Idiopathic absence epilepsies (IAE), that have high prevalence particularly among children and adolescents, are complex disorders mainly caused by genetic factors. Childhood absence epilepsy and juvenile absence epilepsy are among the most common subtypes of IAEs. While the role of ion channels has been the primary focus of epilepsy research, the analysis of mutation and association in both patients with absence epilepsies and animal models revealed the involvement of GABA receptors and calcium channels, but also of novel non-ion channel proteins in inducing spike wave discharges (SWD). Functional studies on a mutated variant of these proteins also support their role ill the epileptogenesis of absence seizures. Studies in animal models point to both the thalamus and cortex as the origin of SWDs: the abnormalities in the components of these circuits leading to seizure activity. This review examines the current research on mutations and susceptibility alleles determined in the genes that code for the subunits of GABA receptors (GABRG2, GABRA1, GABRB3, GABRA5, GABA((B1)) and GABA((B2))), calcium channels (CACNA1A, CACNA1G, CACNA1H, CACNA11, CACNAB4, CACNAG2 and CACNG3), and novel non-ion channel proteins, taking into account the results of functional studies on these variants. (C) (C) 2011 British Epilepsy Association. Published by Elsevier Ltd. All rights reserved.
Localization and mutation detection for paroxysmal kinesigenic choreoathetosis
JOURNAL OF MOLECULAR NEUROSCIENCE
Authors: Du, Te; Bin Feng; Wang, Xin; Mao, Wei; Zhu, Xilin; Li, Liping; Sun, Bei; Niu, Nifang; Liu, Yang; Wang, Yuping; Chen, Biao; Cai, Xingqiu; Liu, Ying
Abstract
Backgrounds Paroxysmal kinesigenic choreoathetosis (PKC) is an autosomal-dominant movement disorder characterized by attacks of paroxysmal involuntary movements. To date, the causative gene has not been discovered. Purpose The purpose of the study is to localize the causative region and detect the causative mutation. Methods A PKC family including 16 subjects (5 cases and 11 controls) in Zhejiang Province was recruited. Nine microsatellite markers on chromosome 16 were selected and genotyped. Two-point LOD scores were calculated. After preliminary localization, CACNG3, IL4R and ABCC11 were selected as candidate genes and were detected by polymerase chain reaction-sequencing or PCR-denaturing high performance liquid chromatography (PCR-DHPLC). Results The maximal two-point LOD score was obtained in D16S3081 with 1.21, and haplotype analysis revealed almost all of individuals carrying 5-3-8-3-4-2-5-5-6 in D16S3093/D16S685/D16S690/D16S3081/D16S3080 D16S411/D16S3136/D16S3112/D16S3057 were affected by PKC. There were no causative mutation in CACNG3, IL4R and ABCC11 genes. Conclusions The culprit gene for PKC was located in similar to 19.34 cM region between 16p12.1-q13, and CACNG3, IL4R and ABCC11 were all ruled out as the cause.