De Novo Mutations in SLC1A2 and CACNA1A Are Important Causes of Epileptic Encephalopathies
AMERICAN JOURNAL OF HUMAN GENETICS
Authors: Myers, Candace T.; McMahon, Jacinta M.; Schneider, Amy L.; Petrovski, Slave; Allen, Andrew S.; Carvill, Gemma L.; Zemel, Matthew; Say-Kally, Julia E.; LaCroix, Amy J.; Heinzen, Erin L.; Hollingsworth, Georgina; Nikanorova, Marina; Corbett, Mark; Gecz, Jozef; Coman, David; Freeman, Jeremy; Calvert, Sophie; Gill, Deepak; Carney, Patrick; Lerman-Sagie, Tally; Sampaio, Hugo; Cossette, Patrick; Delanty, Norman; Dlugos, Dennis; Eichler, Evan E.; Epstein, Michael P.; Glauser, Tracy; Johnson, Michael R.; Kuzniecky, Ruben; Marson, Anthony G.; O'Brien, Terence J.; Petrou, Ruth Ottman Stephen; Poduri, Annapurna; Pickrell, William O.; Chung, Seo-Kyung; Rees, Mark I.; Sherr, Elliott; Sadleir, Lynette G.; Goldstein, David B.; Lowenstein, Daniel H.; Moller, Rikke S.; Berkovic, Samuel F.; Scheffer, Ingrid E.; Mefford, Heather C.
Abstract
Epileptic encephalopathies (EEs) are the most clinically important group of severe early-onset epilepsies. Next-generation sequencing has highlighted the crucial contribution of de novo mutations to the genetic architecture of EEs as well as to their underlying genetic heterogeneity. Our previous whole-exome sequencing study of 264 parent-child trios revealed more than 290 candidate genes in which only a single individual had a de novo variant. We sought to identify additional pathogenic variants in a subset ( n = 27) of these genes via targeted sequencing in an unsolved cohort of 531 individuals with a diverse range of EEs. We report 17 individuals with pathogenic variants in seven of the 27 genes, defining a genetic etiology in 3.2% of this unsolved cohort. Our results provide definitive evidence that de novo mutations in SLC1A2 and CACNA1A cause specific EEs and expand the compendium of clinically relevant genotypes for GABRB3. We also identified EEs caused by genetic variants in ALG13, DNM1, and GNAO1 and report a mutation in IQSEC2. Notably, recurrent mutations accounted for 7/17 of the pathogenic variants identified. As a result of high-depth coverage, parental mosaicism was identified in two out of 14 cases tested with mutant allelic fractions of 5%-6% in the unaffected parents, carrying significant reproductive counseling implications. These results confirm that dysregulation in diverse cellular neuronal pathways causes EEs, and they will inform the diagnosis and management of individuals with these devastating disorders.
Genome-wide association study in obsessive-compulsive disorder: results from the OCGAS
MOLECULAR PSYCHIATRY
Authors: Mattheisen, M.; Samuels, J. F.; Wang, Y.; Greenberg, B. D.; Fyer, A. J.; McCracken, J. T.; Geller, D. A.; Murphy, D. L.; Knowles, J. A.; Grados, M. A.; Riddle, M. A.; Rasmussen, S. A.; McLaughlin, N. C.; Nurmi, E. L.; Askland, K. D.; Qin, H-D; Cullen, B. A.; Piacentini, J.; Pauls, D. L.; Bienvenu, O. J.; Stewart, S. E.; Liang, K-Y; Goes, F. S.; Maher, B.; Pulver, A. E.; Shugart, Y. Y.; Valle, D.; Lange, C.; Nestadt, G.
Abstract
Obsessive-compulsive disorder (OCD) is a psychiatric condition characterized by intrusive thoughts and urges and repetitive, intentional behaviors that cause significant distress and impair functioning. The OCD Collaborative Genetics Association Study (OCGAS) is comprised of comprehensively assessed OCD patients with an early age of OCD onset. After application of a stringent quality control protocol, a total of 1065 families (containing 1406 patients with OCD), combined with population-based samples (resulting in a total sample of 5061 individuals), were studied. An integrative analyses pipeline was utilized, involving association testing at single-nucleotide polymorphism (SNP) and gene levels (via a hybrid approach that allowed for combined analyses of the family-and population-based data). The smallest P-value was observed for a marker on chromosome 9 (near PTPRD, P = 4.13 x 10(-7)). Pre-synaptic PTPRD promotes the differentiation of glutamatergic synapses and interacts with SLITRK3. Together, both proteins selectively regulate the development of inhibitory GABAergic synapses. Although no SNPs were identified as associated with OCD at genome-wide significance level, follow-up analyses of genome-wide association study (GWAS) signals from a previously published OCD study identified significant enrichment (P = 0.0176). Secondary analyses of high-confidence interaction partners of DLGAP1 and GRIK2 (both showing evidence for association in our follow-up and the original GWAS study) revealed a trend of association (P = 0.075) for a set of genes such as NEUROD6, SV2A, GRIA4, SLC1A2 and PTPRD. Analyses at the gene level revealed association of IQCK and C16orf88 (both P < 1 x 10(-6), experiment-wide significant), as well as OFCC1 (P = 6.29 x 10(-5)). The suggestive findings in this study await replication in larger samples.