Somatic variants as a cause of drug‐resistant epilepsy including mesial temporal lobe epilepsy with hippocampal sclerosis

Author:

Carton Robert J.12,Doyle Michael G.1234ORCID,Kearney Hugh13ORCID,Steward Charles A.5,Lench Nicholas J.5,Rogers Anthony5,Heinzen Erin L.6,McDonald Seamus2,Fay Joanna7,Lacey Austin1,Beausang Alan8,Cryan Jane8,Brett Francesca8,El‐Naggar Hany13,Widdess‐Walsh Peter13,Costello Daniel19ORCID,Kilbride Ronan13,Doherty Colin P.110,Sweeney Kieron J.13,O'Brien Donncha F.13,Henshall David C.1ORCID,Delanty Norman123ORCID,Cavalleri Gianpiero L.12ORCID,Benson Katherine A.12

Affiliation:

1. FutureNeuro Science Foundation Ireland Research Centre Royal College of Surgeons in Ireland Dublin Ireland

2. School of Pharmacy and Biomolecular Sciences Royal College of Surgeons in Ireland Dublin Ireland

3. Epilepsy Programme, Department of Neurology Beaumont Hospital Dublin Ireland

4. Strategic Academic Recruitment Doctor of Medicine Programme Royal College of Surgeons in Ireland in collaboration with Blackrock Clinic Dublin Ireland

5. Congenica Limited, BioData Innovation Centre Cambridge UK

6. Department of Genetics, School of Medicine University of North Carolina at Chapel Hill Chapel Hill North Carolina USA

7. Royal College of Surgeons in Ireland Biobanking Service Dublin Ireland

8. Department of Neuropathology Beaumont Hospital Dublin Ireland

9. Department of Neurology Cork University Hospital Cork Ireland

10. Department of Neurology St. James's Hospital Dublin Ireland

Abstract

AbstractObjectiveThe contribution of somatic variants to epilepsy has recently been demonstrated, particularly in the etiology of malformations of cortical development. The aim of this study was to determine the diagnostic yield of somatic variants in genes that have been previously associated with a somatic or germline epilepsy model, ascertained from resected brain tissue from patients with multidrug‐resistant focal epilepsy.MethodsForty‐two patients were recruited across three categories: (1) malformations of cortical development, (2) mesial temporal lobe epilepsy with hippocampal sclerosis, and (3) nonlesional focal epilepsy. Participants were subdivided based on histopathology of the resected brain. Paired blood‐ and brain‐derived DNA samples were sequenced using high‐coverage targeted next generation sequencing to high depth (585× and 1360×, respectively). Variants were identified using Genome Analysis ToolKit (GATK4) MuTect‐2 and confirmed using high‐coverage Amplicon‐EZ sequencing.ResultsSequence data on 41 patients passed quality control. Four somatic variants were validated following amplicon sequencing: within CBL, ALG13, MTOR, and FLNA. The diagnostic yield across 41 patients was 10%, 9% in mesial temporal lobe epilepsy with hippocampal sclerosis and 20% in malformations of cortical development.SignificanceThis study provides novel insights into the etiology of mesial temporal lobe epilepsy with hippocampal sclerosis, highlighting a potential pathogenic role of somatic variants in CBL and ALG13. We also report candidate diagnostic somatic variants in FLNA in focal cortical dysplasia, while providing further insight into the importance of MTOR and related genes in focal cortical dysplasia. This work demonstrates the potential molecular diagnostic value of variants in both germline and somatic epilepsy genes.

Funder

Science Foundation Ireland

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Does epilepsy differentially affect different types of memory?;Seizure: European Journal of Epilepsy;2024-10

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