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Re-annotation of 191 developmental and epileptic encephalopathy-associated genes unmasks de novo variants in SCN1A

Title: Re-annotation of 191 developmental and epileptic encephalopathy-associated genes unmasks de novo variants in SCN1A
Authors: Charles A. Steward; Jolien Roovers; Marie-Marthe Suner; Jose M. Gonzalez; Barbara Uszczynska-Ratajczak; Dmitri Pervouchine; Stephen Fitzgerald; Margarida Viola; Hannah Stamberger; Fadi F. Hamdan; Berten Ceulemans; Patricia Leroy; Caroline Nava; Anne Lepine; Electra Tapanari; Don Keiller; Stephen Abbs; Alba Sanchis-Juan; Detelina Grozeva; Anthony S. Rogers; Mark Diekhans; Roderic Guigó; Robert Petryszak; Berge A. Minassian; Gianpiero Cavalleri; Dimitrios Vitsios; Slavé Petrovski; Jennifer Harrow; Paul Flicek; F. Lucy Raymond; Nicholas J. Lench; Peter De Jonghe; Jonathan M. Mudge; Sarah Weckhuysen; Sanjay M. Sisodiya; Adam Frankish
Publication Year: 2019
Collection: Anglia Ruskin University: Figshare
Subject Terms: research
Description: The developmental and epileptic encephalopathies (DEE) are a group of rare, severe neurodevelopmental disorders, where even the most thorough sequencing studies leave 60–65% of patients without a molecular diagnosis. Here, we explore the incompleteness of transcript models used for exome and genome analysis as one potential explanation for a lack of current diagnoses. Therefore, we have updated the GENCODE gene annotation for 191 epilepsy-associated genes, using human brain-derived transcriptomic libraries and other data to build 3,550 putative transcript models. Our annotations increase the transcriptional ‘footprint’ of these genes by over 674 kb. Using SCN1A as a case study, due to its close phenotype/genotype correlation with Dravet syndrome, we screened 122 people with Dravet syndrome or a similar phenotype with a panel of exon sequences representing eight established genes and identified two de novo SCN1A variants that now - through improved gene annotation - are ascribed to residing among our exons. These two (from 122 screened people, 1.6%) molecular diagnoses carry significant clinical implications. Furthermore, we identified a previously classified SCN1A intronic Dravet syndrome-associated variant that now lies within a deeply conserved exon. Our findings illustrate the potential gains of thorough gene annotation in improving diagnostic yields for genetic disorders.
Document Type: article in journal/newspaper
Language: unknown
Relation: 10779/aru.23778861.v1
Availability: https://figshare.com/articles/journal_contribution/Re-annotation_of_191_developmental_and_epileptic_encephalopathy-associated_genes_unmasks_de_novo_variants_in_SCN1A/23778861
Rights: CC BY 4.0
Accession Number: edsbas.473EE216
Database: BASE