De Novo Mutations in Synaptic Transmission Genes Including DNM1 Cause Epileptic Encephalopathies

被引:263
作者
Appenzeller, Silke
Balling, Rudi
Barisic, Nina
Baulac, Stephanie
Caglayan, Hande
Craiu, Dana
De Jonghe, Peter
Depienne, Christel
Dimova, Petia
Djemie, Tania
Gormley, Padhraig
Guerrini, Renzo
Helbig, Ingo
Hjalgrim, Helle
Hoffman-Zacharska, Dorota
Jaehn, Johanna
Klein, Karl Martin
Koeleman, Bobby
Komarek, Vladimir
Krause, Roland
Kuhlenbaeumer, Gregor
Leguern, Eric
Lehesjoki, Anna-Elina
Lemke, Johannes R.
Lerche, Holger
Linnankivi, Tarja
Marini, Carla
May, Patrick
Moller, Rikke S.
Muhle, Hiltrud
Pal, Deb
Palotie, Aarno
Pendziwiat, Manuela
Robbiano, Angela
Roelens, Filip
Rosenow, Felix
Selmer, Kaja
Serratosa, Jose M.
Sisodiya, Sanjay
Stephani, Ulrich
Sterbova, Katalin
Striano, Pasquale
Suls, Arvid
Talvik, Tiina
von Spiczak, Sarah
Weber, Yvonne
Weckhuysen, Sarah
Zara, Federico
Abou-Khalil, Bassel
Alldredge, Brian K.
机构
关键词
INTELLECTUAL DISABILITY; GRIN2A MUTATIONS; SCHIZOPHRENIA; EPILEPSIES; DYNAMIN-1; PATTERNS; APHASIA; PROTEIN; STXBP1;
D O I
10.1016/j.ajhg.2014.08.013
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, underscoring the need for large cohorts of well-characterized individuals to further define the genetic landscape. Through a collaboration between two consortia (EuroEPINOMICS and Epi4K/EPGP), we analyzed exome-sequencing data of 356 trios with the "classical" epileptic encephalopathies, infantile spasms and Lennox Gastaut syndrome, including 264 trios previously analyzed by the Epi4K/EPGP consortium. In this expanded cohort, we find 429 de nova mutations, including de novo mutations in DNM1 in five individuals and de nova mutations in GABBR2, FASN, and RYR3 in two individuals each. Unlike previous studies, this cohort is sufficiently large to show a significant excess of de nova mutations in epileptic encephalopathy probands compared to the general population using a likelihood analysis (p = 8.2 x 10(-4)), supporting a prominent role for de novo mutations in epileptic encephalopathies. We bring statistical evidence that mutations in DNM1 cause epileptic encephalopathy, find suggestive evidence for a role of three additional genes, and show that at least 12% of analyzed individuals have an identifiable causal de novo mutation. Strikingly, 75% of mutations in these probands are predicted to disrupt a protein involved in regulating synaptic transmission, and there is a significant enrichment of de nova mutations in genes in this pathway in the entire cohort as well. These findings emphasize an important role for synaptic dysregulation in epileptic encephalopathies, above and beyond that caused by ion channel dysfunction.
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收藏
页码:360 / 370
页数:11
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