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Title: Genome-wide copy number variation in epilepsy: novel susceptibility loci in idiopathic generalized and focal epilepsies.
Author(s): Mefford, H.C.
Muhle, H.
Ostertag, P.
Spiczak, S. von
Buysse, K.
Baker, C.
Franke, A.
Malafosse, A.
Genton, P.
Thomas, P.
Gurnett, C.A.
Schreiber, S.
Bassuk, A.G.
Guipponi, M.
Stephani, U.
Helbig, I.
Eichler, E.E.
Publication year: 2010
Document type: Article / Letter to editor
Journal: PLoS Genetics
ISSN: 1553-7390
Volume: vol. 6
Issue: iss. 5
Start page: p. e1000962
End page: p. e1000962
Abstract: Epilepsy is one of the most common neurological disorders in humans with a prevalence of 1% and a lifetime incidence of 3%. Several genes have been identified in rare autosomal dominant and severe sporadic forms of epilepsy, but the genetic cause is unknown in the vast majority of cases. Copy number variants (CNVs) are known to play an important role in the genetic etiology of many neurodevelopmental disorders, including intellectual disability (ID), autism, and schizophrenia. Genome-wide studies of copy number variation in epilepsy have not been performed. We have applied whole-genome oligonucleotide array comparative genomic hybridization to a cohort of 517 individuals with various idiopathic, non-lesional epilepsies. We detected one or more rare genic CNVs in 8.9% of affected individuals that are not present in 2,493 controls; five individuals had two rare CNVs. We identified CNVs in genes previously implicated in other neurodevelopmental disorders, including two deletions in AUTS2 and one deletion in CNTNAP2. Therefore, our findings indicate that rare CNVs are likely to contribute to a broad range of generalized and focal epilepsies. In addition, we find that 2.9% of patients carry deletions at 15q11.2, 15q13.3, or 16p13.11, genomic hotspots previously associated with ID, autism, or schizophrenia. In summary, our findings suggest common etiological factors for seemingly diverse diseases such as ID, autism, schizophrenia, and epilepsy.
Subject: IGMD 3: Genomic disorders and inherited multi-system disorders
Organization: UMCN Extern
Human Genetics
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/88500

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