Genotype-phenotype correlations in SCN8A-related disorders reveal prognostic and therapeutic implications
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Publication date
2022-09-01
Authors
Johannesen, Katrine M
Liu, Yuanyuan
Koko, Mahmoud
Gjerulfsen, Cathrine E
Sonnenberg, Lukas
Schubert, Julian
Fenger, Christina D
Eltokhi, Ahmed
Rannap, Maert
Koch, Nils A
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Article
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taverne
Abstract
We report detailed functional analyses and genotype-phenotype correlations in 392 individuals carrying disease-causing variants in SCN8A, encoding the voltage-gated Na+ channel Nav1.6, with the aim of describing clinical phenotypes related to functional effects. Six different clinical subgroups were identified: Group 1, benign familial infantile epilepsy (n = 15, normal cognition, treatable seizures); Group 2, intermediate epilepsy (n = 33, mild intellectual disability, partially pharmaco-responsive); Group 3, developmental and epileptic encephalopathy (n = 177, severe intellectual disability, majority pharmaco-resistant); Group 4, generalized epilepsy (n = 20, mild to moderate intellectual disability, frequently with absence seizures); Group 5, unclassifiable epilepsy (n = 127); and Group 6, neurodevelopmental disorder without epilepsy (n = 20, mild to moderate intellectual disability). Those in Groups 1-3 presented with focal or multifocal seizures (median age of onset: 4 months) and focal epileptiform discharges, whereas the onset of seizures in patients with generalized epilepsy was later (median: 42 months) with generalized epileptiform discharges. We performed functional studies expressing missense variants in ND7/23 neuroblastoma cells and primary neuronal cultures using recombinant tetrodotoxin-insensitive human Nav1.6 channels and whole-cell patch-clamping. Two variants causing developmental and epileptic encephalopathy showed a strong gain-of-function (hyperpolarizing shift of steady-state activation, strongly increased neuronal firing rate) and one variant causing benign familial infantile epilepsy or intermediate epilepsy showed a mild gain-of-function (defective fast inactivation, less increased firing). In contrast, all three variants causing generalized epilepsy induced a loss-of-function (reduced current amplitudes, depolarizing shift of steady-state activation, reduced neuronal firing). Functional effects were known for 170 individuals. All 136 individuals carrying a functionally tested gain-of-function variant had either focal (n = 97, Groups 1-3) or unclassifiable (n = 39) epilepsy, whereas 34 individuals with a loss-of-function variant had either generalized (n = 14), no (n = 11) or unclassifiable (n = 6) epilepsy; only three had developmental and epileptic encephalopathy. Computational modelling in the gain-of-function group revealed a significant correlation between the severity of the electrophysiological and clinical phenotypes. Gain-of-function variant carriers responded significantly better to sodium channel blockers than to other anti-seizure medications, and the same applied for all individuals in Groups 1-3. In conclusion, our data reveal clear genotype-phenotype correlations between age at seizure onset, type of epilepsy and gain- or loss-of-function effects of SCN8A variants. Generalized epilepsy with absence seizures is the main epilepsy phenotype of loss-of-function variant carriers and the extent of the electrophysiological dysfunction of the gain-of-function variants is a main determinant of the severity of the clinical phenotype in focal epilepsies. Our pharmacological data indicate that sodium channel blockers present a treatment option in SCN8A-related focal epilepsy with onset in the first year of life.
Keywords
Epilepsy, Generalized/drug therapy, Epileptic Syndromes/drug therapy, Genetic Association Studies, Humans, Infant, Intellectual Disability/genetics, Mutation, NAV1.6 Voltage-Gated Sodium Channel/genetics, Prognosis, SCN8A, Seizures/drug therapy, Sodium Channel Blockers/therapeutic use, epilepsy, genetics, personalized medicine, Taverne, General Medicine, Journal Article
Citation
Johannesen, K M, Liu, Y, Koko, M, Gjerulfsen, C E, Sonnenberg, L, Schubert, J, Fenger, C D, Eltokhi, A, Rannap, M, Koch, N A, Lauxmann, S, Krüger, J, Kegele, J, Canafoglia, L, Franceschetti, S, Mayer, T, Rebstock, J, Zacher, P, Ruf, S, Alber, M, Sterbova, K, Lassuthová, P, Vlckova, M, Lemke, J R, Platzer, K, Krey, I, Heine, C, Wieczorek, D, Kroell-Seger, J, Lund, C, Klein, K M, Billie Au, P Y, Rho, J M, Ho, A W, Masnada, S, Veggiotti, P, Giordano, L, Accorsi, P, Hoei-Hansen, C E, Striano, P, Zara, F, Verhelst, H, Verhoeven, J S, van der Zwaag, B, Harder, A V E, Brilstra, E, Pendziwiat, M, Lebon, S, Vaccarezza, M, Minh Le, N, Christensen, J, Grønborg, S, Scherer, S W, Howe, J, Fazeli, W, Howell, K B, Leventer, R, Stutterd, C, Walsh, S, Gerard, M, Gerard, B, Matricardi, S, Bonardi, C M, Sartori, S, Berger, A, Hoffman-Zacharska, D, Mastrangelo, M, Darra, F, Vøllo, A, Motazacker, M M, Lakeman, P, Nizon, M, Betzler, C, Altuzarra, C, Caume, R, Roubertie, A, Gélisse, P, Marini, C, Guerrini, R, Bilan, F, Tibussek, D, Koch-Hogrebe, M, Perry, M S, Ichikawa, S, Dadali, E, Sharkov, A, Mishina, I, Abramov, M, Kanivets, I, Korostelev, S, Kutsev, S, Wain, K E, Eisenhauer, N, Wagner, M, Savatt, J M, Müller-Schlüter, K, Bassan, H, Borovikov, A, Nassogne, M-C, Destrée, A, Schoonjans, A-S, Meuwissen, M, Buzatu, M, Jansen, A, Scalais, E, Srivastava, S, Tan, W-H, Olson, H E, Loddenkemper, T, Poduri, A, Helbig, K L, Helbig, I, Fitzgerald, M P, Goldberg, E M, Roser, T, Borggraefe, I, Brünger, T, May, P, Lal, D, Lederer, D, Rubboli, G, Heyne, H O, Lesca, G, Hedrich, U B S, Benda, J, Gardella, E, Lerche, H & Møller, R S 2022, 'Genotype-phenotype correlations in SCN8A-related disorders reveal prognostic and therapeutic implications', Brain : a journal of neurology, vol. 145, no. 9, pp. 2991-3009. https://doi.org/10.1093/brain/awab321