The genomic landscape across 474 surgically accessible epileptogenic human brain lesions

Author:

López-Rivera Javier A123ORCID,Leu Costin2345,Macnee Marie6,Khoury Jean3,Hoffmann Lucas7,Coras Roland7,Kobow Katja7ORCID,Bhattarai Nisha23,Pérez-Palma Eduardo8ORCID,Hamer Hajo9,Brandner Sebastian10,Rössler Karl11,Bien Christian G12ORCID,Kalbhenn Thilo13,Pieper Tom14,Hartlieb Till1415,Butler Elizabeth3,Genovese Giulio4,Becker Kerstin6,Altmüller Janine61617,Niestroj Lisa-Marie6,Ferguson Lisa3,Busch Robyn M23ORCID,Nürnberg Peter618,Najm Imad3,Blümcke Ingmar37ORCID,Lal Dennis2346ORCID

Affiliation:

1. Department of Molecular Medicine, Cleveland Clinic Lerner College of Medicine, Case Western Reserve University , Cleveland, OH 44195 , USA

2. Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic , Cleveland, OH 44195 , USA

3. Charles Shor Epilepsy Center, Neurological Institute, Cleveland Clinic , Cleveland, OH 44195 , USA

4. Stanley Center for Psychiatric Research, Broad Institute of Harvard and M.I.T. , Cambridge, MA 02142 , USA

5. Department of Clinical and Experimental Epilepsy, Institute of Neurology, University College London , London WC1N 3BG , UK

6. Cologne Center for Genomics (CCG), University of Cologne, Faculty of Medicine and University Hospital Cologne , 50931 Cologne , Germany

7. Department of Neuropathology, University Hospital Erlangen , Erlangen 91054 , Germany

8. Universidad del Desarrollo, Centro de Genética y Genómica, Facultad de Medicina Clínica Alemana , Santiago 12438 , Chile

9. Epilepsy Center, University Hospital Erlangen , 91054 Erlangen , Germany

10. Department of Neurosurgery, University Hospital Erlangen , Erlangen 91054 , Germany

11. Department of Neurosurgery, Medical University Vienna , 1090 Vienna , Austria

12. Department of Epileptology (Krankenhaus Mara), Medical School, Bielefeld University , 33617 Bielefeld , Germany

13. Department of Neurosurgery - Epilepsy surgery, Evangelisches Klinikum Bethel, Universitätsklinikum OWL, Bielefeld University , 33617 Bielefeld , Germany

14. Center for Pediatric Neurology, Neurorehabilitation and Epileptology, Schoen-Clinic , 83569 Vogtareuth , Germany

15. Research Institute ‘Rehabilitation, Transition, Palliation’, PMU Salzburg , 5020 Salzburg , Austria

16. Berlin Institute of Health at Charité, Universitätsmedizin Berlin, Core Facility Genomics , 10117 Berlin , Germany

17. Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC) , 13125 Berlin , Germany

18. Center for Molecular Medicine Cologne (CMMC), University of Cologne, Faculty of Medicine and University Hospital Cologne , 50931 Cologne , Germany

Abstract

Abstract Understanding the exact molecular mechanisms involved in the aetiology of epileptogenic pathologies with or without tumour activity is essential for improving treatment of drug-resistant focal epilepsy. Here, we characterize the landscape of somatic genetic variants in resected brain specimens from 474 individuals with drug-resistant focal epilepsy using deep whole-exome sequencing (>350×) and whole-genome genotyping. Across the exome, we observe a greater number of somatic single-nucleotide variants in low-grade epilepsy-associated tumours (7.92 ± 5.65 single-nucleotide variants) than in brain tissue from malformations of cortical development (6.11 ± 4 single-nucleotide variants) or hippocampal sclerosis (5.1 ± 3.04 single-nucleotide variants). Tumour tissues also had the largest number of likely pathogenic variant carrying cells. low-grade epilepsy-associated tumours had the highest proportion of samples with one or more somatic copy-number variants (24.7%), followed by malformations of cortical development (5.4%) and hippocampal sclerosis (4.1%). Recurring somatic whole chromosome duplications affecting Chromosome 7 (16.8%), chromosome 5 (10.9%), and chromosome 20 (9.9%) were observed among low-grade epilepsy-associated tumours. For germline variant-associated malformations of cortical development genes such as TSC2, DEPDC5 and PTEN, germline single-nucleotide variants were frequently identified within large loss of heterozygosity regions, supporting the recently proposed ‘second hit’ disease mechanism in these genes. We detect somatic variants in 12 established lesional epilepsy genes and demonstrate exome-wide statistical support for three of these in the aetiology of low-grade epilepsy-associated tumours (e.g. BRAF) and malformations of cortical development (e.g. SLC35A2 and MTOR). We also identify novel significant associations for PTPN11 with low-grade epilepsy-associated tumours and NRAS Q61 mutated protein with a complex malformation of cortical development characterized by polymicrogyria and nodular heterotopia. The variants identified in NRAS are known from cancer studies to lead to hyperactivation of NRAS, which can be targeted pharmacologically. We identify large recurrent 1q21–q44 duplication including AKT3 in association with focal cortical dysplasia type 2a with hyaline astrocytic inclusions, another rare and possibly under-recognized brain lesion. The clinical-genetic analyses showed that the numbers of somatic single-nucleotide variant across the exome and the fraction of affected cells were positively correlated with the age at seizure onset and surgery in individuals with low-grade epilepsy-associated tumours. In summary, our comprehensive genetic screen sheds light on the genome-scale landscape of genetic variants in epileptic brain lesions, informs the design of gene panels for clinical diagnostic screening and guides future directions for clinical implementation of epilepsy surgery genetics.

Funder

German Research Council

West German Genome Center

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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