Genetic determinants of common epilepsies: a meta-analysis of genome-wide association studies

被引:204
|
作者
Anney, Richard J. L.
Avbersek, Andreja
Balding, David
Baum, Larry
Becker, Felicitas
Berkovic, Samuel F.
Bradfield, Jonathan P.
Brody, Lawrence C.
Buono, Russell J.
Catarino, Claudia B.
Cavalleri, Gianpiero L.
Cherny, Stacey S.
Chinthapalli, Krishna
Coffey, Alison J.
Compston, Alastair
Cossette, Patrick
de Haan, Gerrit-Jan
De Jonghe, Peter
de Kovel, Carolien G. F.
Delanty, Norman
Depondt, Chantal
Dlugos, Dennis J.
Doherty, Colin P.
Elger, Christian E.
Ferraro, Thomas N.
Feucht, Martha
Franke, Andre
French, Jacqueline
Gaus, Verena
Goldstein, David B.
Gui, Hongsheng
Guo, Youling
Hakonarson, Hakon
Hallmann, Kerstin
Heinzen, Erin L.
Helbig, Ingo
Hjalgrim, Helle
Jackson, Margaret
Jamnadas-Khoda, Jennifer
Janz, Dieter
Johnson, Michael R.
Kaelviaeinen, Reetta
Kantanen, Anne-Mari
Kasperaviciute, Dalia
Trenite, Dorothee Kasteleijn-Nolst
Koeleman, Bobby P. C.
Kunz, Wolfram S.
Kwan, Patrick
Lau, Yu Lung
Lehesjoki, Anna-Elina
机构
来源
LANCET NEUROLOGY | 2014年 / 13卷 / 09期
关键词
NEURONAL SODIUM-CHANNEL; DE-NOVO MUTATIONS; GENERALIZED EPILEPSY; RISK; SCN1A; SEIZURES; VRK2; VARIANTS; COMPLEX; CLASSIFICATION;
D O I
10.1016/S1474-4422(14)70171-1
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background The epilepsies are a clinically heterogeneous group of neurological disorders. Despite strong evidence for heritability, genome-wide association studies have had little success in identification of risk loci associated with epilepsy, probably because of relatively small sample sizes and insufficient power. We aimed to identify risk loci through meta-analyses of genome-wide association studies for all epilepsy and the two largest clinical subtypes (genetic generalised epilepsy and focal epilepsy). Methods We combined genome-wide association data from 12 cohorts of individuals with epilepsy and controls from population-based datasets. Controls were ethnically matched with cases. We phenotyped individuals with epilepsy into categories of genetic generalised epilepsy, focal epilepsy, or unclassified epilepsy. After standardised filtering for quality control and imputation to account for different genotyping platforms across sites, investigators at each site conducted a linear mixed-model association analysis for each dataset. Combining summary statistics, we conducted fixed-effects meta-analyses of all epilepsy, focal epilepsy, and genetic generalised epilepsy. We set the genome-wide significance threshold at p<1.66 x 10(-8). Findings We included 8696 cases and 26157 controls in our analysis. Meta-analysis of the all-epilepsy cohort identified loci at 2q24.3 (p=8.71 x 10(-10), implicating SCN1A, and at 4p15.1 (p=5.44 x 10(-9)), harbouring PCDH7, which encodes a protocadherin molecule not previously implicated in epilepsy. For the cohort of genetic generalised epilepsy, we noted a single signal at 2p16.1 (p=9.99 x 10(-9)), implicating VRK2 or FANCL. No single nucleotide polymorphism achieved genome-wide significance for focal epilepsy. Interpretation This meta-analysis describes a new locus not previously implicated in epilepsy and provides further evidence about the genetic architecture of these disorders, with the ultimate aim of assisting in disease classification and prognosis. The data suggest that specific loci can act pleiotropically raising risk for epilepsy broadly, or can have effects limited to a specific epilepsy subtype. Future genetic analyses might benefit from both lumping (ie, grouping of epilepsy types together) or splitting (ie, analysis of specific clinical subtypes).
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收藏
页码:893 / 903
页数:11
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