Article (Périodiques scientifiques)
Exome sequencing of 20,979 individuals with epilepsy reveals shared and distinct ultra-rare genetic risk across disorder subtypes.
Epi25 Collaborative; KRAUSE, Roland; FERREIRA DA SILVA, Izabela et al.
2024In Nature Neuroscience, 27 (10), p. 1864 - 1879
Peer reviewed vérifié par ORBi
 

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Mots-clés :
Humans; DNA Copy Number Variations/genetics; Female; Male; Polymorphism, Single Nucleotide/genetics; Risk Factors; Epilepsy/genetics; Genetic Predisposition to Disease/genetics; Exome Sequencing; Exome/genetics
Résumé :
[en] Identifying genetic risk factors for highly heterogeneous disorders such as epilepsy remains challenging. Here we present, to our knowledge, the largest whole-exome sequencing study of epilepsy to date, with more than 54,000 human exomes, comprising 20,979 deeply phenotyped patients from multiple genetic ancestry groups with diverse epilepsy subtypes and 33,444 controls, to investigate rare variants that confer disease risk. These analyses implicate seven individual genes, three gene sets and four copy number variants at exome-wide significance. Genes encoding ion channels show strong association with multiple epilepsy subtypes, including epileptic encephalopathies and generalized and focal epilepsies, whereas most other gene discoveries are subtype specific, highlighting distinct genetic contributions to different epilepsies. Combining results from rare single-nucleotide/short insertion and deletion variants, copy number variants and common variants, we offer an expanded view of the genetic architecture of epilepsy, with growing evidence of convergence among different genetic risk loci on the same genes. Top candidate genes are enriched for roles in synaptic transmission and neuronal excitability, particularly postnatally and in the neocortex. We also identify shared rare variant risk between epilepsy and other neurodevelopmental disorders. Our data can be accessed via an interactive browser, hopefully facilitating diagnostic efforts and accelerating the development of follow-up studies.
Centre de recherche :
Luxembourg Centre for Systems Biomedicine (LCSB): Bioinformatics Core (R. Schneider Group)
Disciplines :
Génétique & processus génétiques
Neurologie
Auteur, co-auteur :
Epi25 Collaborative
KRAUSE, Roland  ;  University of Luxembourg > Luxembourg Centre for Systems Biomedicine (LCSB) > Bioinformatics Core
FERREIRA DA SILVA, Izabela ;  University of Luxembourg > Luxembourg Centre for Systems Biomedicine > Bioinformatics Core > Team Roland KRAUSE
ZIZOVIC, Milena ;  University of Luxembourg > Luxembourg Centre for Systems Biomedicine (LCSB) > Bioinformatics Core
MAY, Patrick  ;  University of Luxembourg > Luxembourg Centre for Systems Biomedicine (LCSB) > Bioinformatics Core
Co-auteurs externes :
yes
Langue du document :
Anglais
Titre :
Exome sequencing of 20,979 individuals with epilepsy reveals shared and distinct ultra-rare genetic risk across disorder subtypes.
Date de publication/diffusion :
octobre 2024
Titre du périodique :
Nature Neuroscience
ISSN :
1097-6256
eISSN :
1546-1726
Maison d'édition :
Springer Science and Business Media LLC, Etats-Unis
Volume/Tome :
27
Fascicule/Saison :
10
Pagination :
1864 - 1879
Peer reviewed :
Peer reviewed vérifié par ORBi
Focus Area :
Systems Biomedicine
Objectif de développement durable (ODD) :
3. Bonne santé et bien-être
Projet FnR :
FNR16394868 - Epileptogenesis Of Genetic Epilepsies, 2021 (01/10/2021-...) - Alexander Skupin
Intitulé du projet de recherche :
U-AGR-8268 - Treat-ION 2 - MAY Patrick
Organisme subsidiant :
U.S. Department of Health & Human Services | National Institutes of Health
U.S. Department of Health & Human Services | NIH | National Human Genome Research Institute
Disponible sur ORBilu :
depuis le 07 octobre 2024

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