Andrea Accogli, Roope Männikkö, Henry Houlden, Dimitri M Kullmann, Alfons Macaya, Michael G Hanna, Bertrand Isidor, Benjamin Cogne, Nilika Shah Singhal, P Y Billie Au, Marie Alesandrini, Sara Fortuna, Vincenzo Salpietro, Júlia Sala-Coromina, Amy Blevins, Adi Reich, Michelle M Morrow, Federico Zara, Pasquale Striano, Reza Maroofian, Anna Marcé-Grau, Emer O'Connor, Stephanie Efthymiou, Valentina Galassi Deforie
Journal: Epilepsia 2023;64(2):443-455
PMID: 36318112
OBJECTIVE
Mutations in the genes encoding neuronal ion channels are a common cause of Mendelian neurological diseases. We sought to identify novel de novo sequence variants in cases with early infantile epileptic phenotypes and neurodevelopmental anomalies.
METHODS
Following clinical diagnosis, we performed whole exome sequencing of the index cases and their parents. Identified channel variants were expressed in Xenopus oocytes and their functional properties assessed using two-electrode voltage clamp.
RESULTS
We identified novel de novo variants in KCNA6 in four unrelated individuals variably affected with neurodevelopmental disorders and seizures with onset in the first year of life. Three of the four identified mutations affect the pore-lining S6 α-helix of K 1.6. A prominent finding of functional characterization in Xenopus oocytes was that the channel variants showed only minor effects on channel activation but slowed channel closure and shifted the voltage dependence of deactivation in a hyperpolarizing direction. Channels with a mutation affecting the S6 helix display dominant effects on channel deactivation when co-expressed with wild-type K 1.6 or K 1.1 subunits.
SIGNIFICANCE
This is the first report of de novo nonsynonymous variants in KCNA6 associated with neurological or any clinical features. Channel variants showed a consistent effect on channel deactivation, slowing the rate of channel closure following normal activation. This specific gain-of-function feature is likely to underlie the neurological phenotype in our patients. Our data highlight KCNA6 as a novel channelopathy gene associated with early infantile epileptic phenotypes and neurodevelopmental anomalies.
© 2022 The Authors. Epilepsia published by Wiley Periodicals LLC on behalf of International League Against Epilepsy.
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