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Genome-wide identification and phenotypic characterization of seizure-associated copy number variations in 741,075 individuals

Title: Genome-wide identification and phenotypic characterization of seizure-associated copy number variations in 741,075 individuals
Authors: Montanucci, L; Lewis-Smith, D; Collins, RL; Niestroj, LM; Parthasarathy, S; Xian, J; Ganesan, S; Macnee, M; Brünger, T; Thomas, RH; Talkowski, M; Motelow, JE; Povysil, G; Dhindsa, RS; Stanley, KE; Allen, AS; Goldstein, DB; Feng, YCA; Howrigan, DP; Abbott, LE; Tashman, K; Cerrato, F; Cusick, C; Singh, T; Heyne, H; Byrnes, AE; Churchhouse, C; Watts, N; Solomonson, M; Lal, D; Gupta, N; Neale, BM; Berkovic, SF; Lerche, H; Lowenstein, DH; Cavalleri, GL; Cossette, P; Cotsapas, C; De Jonghe, P; Dixon-Salazar, T; Guerrini, R; Hakonarson, H; Heinzen, EL; Helbig, I; Kwan, P; Marson, AG; Petrovski, S; Kamalakaran, S; Sisodiya, SM; Stewart, R; Weckhuysen, S; Depondt, C; Dlugos, DJ; Scheffer, IE; Striano, P; Freyer, C; Krause, R; May, P; McKenna, K; Regan, BM; Bennett, CA; Leech, SL; Leu, C; O’Brien, TJ; Todaro, M; Stamberger, H; Depondti, C; Andrade, DM; Ali, QZ; Sadoway, TR; Krestel, H; Schaller, A; Papacostas, SS; Kousiappa, I; Tanteles, GA; Yiolanda, C; Šterbová, K; Vlcková, M; Sedlácková, L; Laššuthová, P; Klein, KM; Rosenow, F; Reif, PS; Knake, S; Neubauer, BA; Zimprich, F; Feucht, M; Reinthaler, E; Kunz, WS; Zsurka, G; Surges, R; Baumgartner, TH; Von Wrede, R; Pendziwiat, M; Muhle, H; Rademacher, A; Van Baalen, A; Von Spiczak, S
Source: Nature Communications , 14 , Article 4392. (2023)
Publisher Information: Springer Science and Business Media LLC
Publication Year: 2023
Collection: University College London: UCL Discovery
Description: Copy number variants (CNV) are established risk factors for neurodevelopmental disorders with seizures or epilepsy. With the hypothesis that seizure disorders share genetic risk factors, we pooled CNV data from 10,590 individuals with seizure disorders, 16,109 individuals with clinically validated epilepsy, and 492,324 population controls and identified 25 genome-wide significant loci, 22 of which are novel for seizure disorders, such as deletions at 1p36.33, 1q44, 2p21-p16.3, 3q29, 8p23.3-p23.2, 9p24.3, 10q26.3, 15q11.2, 15q12- q13.1, 16p12.2, 17q21.31, duplications at 2q13, 9q34.3, 16p13.3, 17q12, 19p13.3, 20q13.33, and reciprocal CNVs at 16p11.2, and 22q11.21. Using genetic data from additional 248,751 individuals with 23 neuropsychiatric phenotypes, we explored the pleiotropy of these 25 loci. Finally, in a subset of individuals with epilepsy and detailed clinical data available, we performed phenome-wide association analyses between individual CNVs and clinical annotations categorized through the Human Phenotype Ontology (HPO). For six CNVs, we identified 19 significant associations with specific HPO terms and generated, for all CNVs, phenotype signatures across 17 clinical categories relevant for epileptologists. This is the most comprehensive investigation of CNVs in epilepsy and related seizure disorders, with potential implications for clinical practice.
Document Type: article in journal/newspaper
File Description: text
Language: English
Relation: https://discovery.ucl.ac.uk/id/eprint/10177097/
Availability: https://discovery.ucl.ac.uk/id/eprint/10177097/1/s41467-023-39539-6.pdf; https://discovery.ucl.ac.uk/id/eprint/10177097/
Rights: open
Accession Number: edsbas.F5D0AE4D
Database: BASE