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Testing association of rare genetic variants with resistance to three common antiseizure medications

Authors :
European Commission - EC [sponsor]
Wolking, Stefan
Moreau, Claudia
Nies, Anne T.
Schaeffeler, Elke
McCormack, Mark
Auce, Pauls
Avbersek, Andreja
Becker, Felicitas
Krenn, Martin
Møller, Rikke S.
Nikanorova, Marina
Weber, Yvonne G.
Weckhuysen, Sarah
Cavalleri, Gianpiero L.
Delanty, Norman
Depondt, Chantal
Johnson, Michael R.
Koeleman, Bobby P. C.
Kunz, Wolfram S.
Marson, Anthony G.
Sander, Josemir W.
Sills, Graeme J.
Striano, Pasquale
Zara, Federico
Zimprich, Fritz
Schwab, Matthias
Krause, Roland
Sisodiya, Sanjay M.
Cossette, Patrick
Girard, Simon L.
Lerche, Holger
EpiPGX Consortium
European Commission - EC [sponsor]
Wolking, Stefan
Moreau, Claudia
Nies, Anne T.
Schaeffeler, Elke
McCormack, Mark
Auce, Pauls
Avbersek, Andreja
Becker, Felicitas
Krenn, Martin
Møller, Rikke S.
Nikanorova, Marina
Weber, Yvonne G.
Weckhuysen, Sarah
Cavalleri, Gianpiero L.
Delanty, Norman
Depondt, Chantal
Johnson, Michael R.
Koeleman, Bobby P. C.
Kunz, Wolfram S.
Marson, Anthony G.
Sander, Josemir W.
Sills, Graeme J.
Striano, Pasquale
Zara, Federico
Zimprich, Fritz
Schwab, Matthias
Krause, Roland
Sisodiya, Sanjay M.
Cossette, Patrick
Girard, Simon L.
Lerche, Holger
EpiPGX Consortium
Publication Year :
2020

Abstract

Objective Drug resistance is a major concern in the treatment of individuals with epilepsy. No genetic markers for resistance to individual antiseizure medication (ASM) have yet been identified. We aimed to identify the role of rare genetic variants in drug resistance for three common ASMs: levetiracetam (LEV), lamotrigine (LTG), and valproic acid (VPA). Methods A cohort of 1622 individuals of European descent with epilepsy was deeply phenotyped and underwent whole exome sequencing (WES), comprising 575 taking LEV, 826 LTG, and 782 VPA. We performed gene- and gene set–based collapsing analyses comparing responders and nonresponders to the three drugs to determine the burden of different categories of rare genetic variants. Results We observed a marginally significant enrichment of rare missense, truncating, and splice region variants in individuals who were resistant to VPA compared to VPA responders for genes involved in VPA pharmacokinetics. We also found a borderline significant enrichment of truncating and splice region variants in the synaptic vesicle glycoprotein (SV2) gene family in nonresponders compared to responders to LEV. We did not see any significant enrichment using a gene-based approach. Significance In our pharmacogenetic study, we identified a slightly increased burden of damaging variants in gene groups related to drug kinetics or targeting in individuals presenting with drug resistance to VPA or LEV. Such variants could thus determine a genetic contribution to drug resistance.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1148634961
Document Type :
Electronic Resource