Literature DB >> 28777935

De Novo Mutations in YWHAG Cause Early-Onset Epilepsy.

Ilaria Guella1, Marna B McKenzie1, Daniel M Evans1, Sarah E Buerki2, Eric B Toyota3, Margot I Van Allen4, Mohnish Suri5, Frances Elmslie6, Marleen E H Simon7, Koen L I van Gassen7, Delphine Héron8, Boris Keren8, Caroline Nava8, Mary B Connolly3, Michelle Demos9, Matthew J Farrer10.   

Abstract

Massively parallel sequencing has revealed many de novo mutations in the etiology of developmental and epileptic encephalopathies (EEs), highlighting their genetic heterogeneity. Additional candidate genes have been prioritized in silico by their co-expression in the brain. Here, we evaluate rare coding variability in 20 candidates nominated with the use of a reference gene set of 51 established EE-associated genes. Variants within the 20 candidate genes were extracted from exome-sequencing data of 42 subjects with EE and no previous genetic diagnosis. We identified 7 rare non-synonymous variants in 7 of 20 genes and performed Sanger sequence validation in affected probands and parental samples. De novo variants were found only in SLC1A2 (aka EAAT2 or GLT1) (c.244G>A [p.Gly82Arg]) and YWHAG (aka 14-3-3γ) (c.394C>T [p.Arg132Cys]), highlighting the potential cause of EE in 5% (2/42) of subjects. Seven additional subjects with de novo variants in SLC1A2 (n = 1) and YWHAG (n = 6) were subsequently identified through online tools. We identified a highly significant enrichment of de novo variants in YWHAG, establishing their role in early-onset epilepsy, and we provide additional support for the prior assignment of SLC1A2. Hence, in silico modeling of brain co-expression is an efficient method for nominating EE-associated genes to further elucidate the disorder's etiology and genotype-phenotype correlations.
Copyright © 2017 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  SLC1A2; YWHAG; de novo variants; epileptic encephalopathy; whole-exome sequencing

Mesh:

Substances:

Year:  2017        PMID: 28777935      PMCID: PMC5544417          DOI: 10.1016/j.ajhg.2017.07.004

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  63 in total

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