Identification of new risk factors for rolandic epilepsy: CNV at Xp22.31 and alterations at cholinergic synapses

Author:

Addis LauraORCID,Sproviero William,Thomas Sanjeev V,Caraballo Roberto H,Newhouse Stephen J,Gomez Kumudini,Hughes Elaine,Kinali Maria,McCormick David,Hannan Siobhan,Cossu Silvia,Taylor Jacqueline,Akman Cigdem I,Wolf Steven M,Mandelbaum David E,Gupta Rajesh,van der Spek Rick A,Pruna Dario,Pal Deb K

Abstract

BackgroundRolandic epilepsy (RE) is the most common genetic childhood epilepsy, consisting of focal, nocturnal seizures and frequent neurodevelopmental impairments in speech, language, literacy and attention. A complex genetic aetiology is presumed in most, with monogenic mutations in GRIN2A accounting for >5% of cases.ObjectiveTo identify rare, causal CNV in patients with RE.MethodsWe used high-density SNP arrays to analyse the presence of rare CNVs in 186 patients with RE from the UK, the USA, Sardinia, Argentina and Kerala, India.ResultsWe identified 84 patients with one or more rare CNVs, and, within this group, 14 (7.5%) with recurrent risk factor CNVs and 15 (8.0%) with likely pathogenic CNVs. Nine patients carried recurrent hotspot CNVs including at 16p13.11 and 1p36, with the most striking finding that four individuals (three from Sardinia) carried a duplication, and one a deletion, at Xp22.31. Five patients with RE carried a rare CNV that disrupted genes associated with other epilepsies (KCTD7, ARHGEF15, CACNA2D1, GRIN2A and ARHGEF4), and 17 cases carried CNVs that disrupted genes associated with other neurological conditions or that are involved in neuronal signalling/development. Network analysis of disrupted genes with high brain expression identified significant enrichment in pathways of the cholinergic synapse, guanine-exchange factor activation and the mammalian target of rapamycin.ConclusionOur results provide a CNV profile of an ethnically diverse cohort of patients with RE, uncovering new areas of research focus, and emphasise the importance of studying non-western European populations in oligogenic disorders to uncover a full picture of risk variation.

Funder

European Union Grant

Wellcome Trust

Eli Lilly and Company

European Union Marie Curie International Reintegration Award of the Seventh Framework Programme

Charles Sykes Epilepsy Research Trust

Ali Paris Fund for Epilepsy Research

Waterloo Foundation

NIHR Specialist Biomedical Research Centre for Mental Health of South London and Maudsley NHS Foundation Trust

Publisher

BMJ

Subject

Genetics (clinical),Genetics

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