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Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants

Mutations in KCNQ2 encoding for voltage-gated K channel subunits underlying the neuronal M-current have been associated with infantile-onset epileptic disorders. The clinical spectrum ranges from self-limited neonatal seizures to epileptic encephalopathy and delayed development. Mutations in KCNQ2 c...

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Autores principales: Chokvithaya, Suphalak, Caengprasath, Natarin, Buasong, Aayalida, Jantasuwan, Supavadee, Santawong, Kanokwan, Leela-adisorn, Netchanok, Tongkobpetch, Siraprapa, Ittiwut, Chupong, Saengow, Vitchayaporn Emarach, Kamolvisit, Wuttichart, Boonsimma, Ponghatai, Bongsebandhu-phubhakdi, Saknan, Shotelersuk, Vorasuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9971330/
https://www.ncbi.nlm.nih.gov/pubmed/36849527
http://dx.doi.org/10.1038/s41598-023-29924-y
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author Chokvithaya, Suphalak
Caengprasath, Natarin
Buasong, Aayalida
Jantasuwan, Supavadee
Santawong, Kanokwan
Leela-adisorn, Netchanok
Tongkobpetch, Siraprapa
Ittiwut, Chupong
Saengow, Vitchayaporn Emarach
Kamolvisit, Wuttichart
Boonsimma, Ponghatai
Bongsebandhu-phubhakdi, Saknan
Shotelersuk, Vorasuk
author_facet Chokvithaya, Suphalak
Caengprasath, Natarin
Buasong, Aayalida
Jantasuwan, Supavadee
Santawong, Kanokwan
Leela-adisorn, Netchanok
Tongkobpetch, Siraprapa
Ittiwut, Chupong
Saengow, Vitchayaporn Emarach
Kamolvisit, Wuttichart
Boonsimma, Ponghatai
Bongsebandhu-phubhakdi, Saknan
Shotelersuk, Vorasuk
author_sort Chokvithaya, Suphalak
collection PubMed
description Mutations in KCNQ2 encoding for voltage-gated K channel subunits underlying the neuronal M-current have been associated with infantile-onset epileptic disorders. The clinical spectrum ranges from self-limited neonatal seizures to epileptic encephalopathy and delayed development. Mutations in KCNQ2 could be either gain- or loss-of-function which require different therapeutic approaches. To better understand genotype–phenotype correlation, more reports of patients and their mutations with elucidated molecular mechanism are needed. We studied 104 patients with infantile-onset pharmacoresistant epilepsy who underwent exome or genome sequencing. Nine patients with neonatal-onset seizures from unrelated families were found to harbor pathogenic or likely pathogenic variants in the KCNQ2 gene. The p.(N258K) was recently reported, and p. (G279D) has never been previously reported. Functional effect of p.(N258K) and p.(G279D) has never been previously studied. The cellular localization study demonstrated that the surface membrane expression of Kv7.2 carrying either variant was decreased. Whole-cell patch-clamp analyses revealed that both variants significantly impaired Kv7.2 M-current amplitude and density, conductance depolarizing shift in voltage dependence of activation, membrane resistance, and membrane time constant (Tau), indicating a loss-of-function in both the homotetrameric and heterotetrameric with Kv7.3 channels. In addition, both variants exerted dominant-negative effects in heterotetrameric with Kv7.3 channels. This study expands the mutational spectrum of KCNQ2- related epilepsy and their functional consequences provide insights into their pathomechanism.
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spelling pubmed-99713302023-03-01 Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants Chokvithaya, Suphalak Caengprasath, Natarin Buasong, Aayalida Jantasuwan, Supavadee Santawong, Kanokwan Leela-adisorn, Netchanok Tongkobpetch, Siraprapa Ittiwut, Chupong Saengow, Vitchayaporn Emarach Kamolvisit, Wuttichart Boonsimma, Ponghatai Bongsebandhu-phubhakdi, Saknan Shotelersuk, Vorasuk Sci Rep Article Mutations in KCNQ2 encoding for voltage-gated K channel subunits underlying the neuronal M-current have been associated with infantile-onset epileptic disorders. The clinical spectrum ranges from self-limited neonatal seizures to epileptic encephalopathy and delayed development. Mutations in KCNQ2 could be either gain- or loss-of-function which require different therapeutic approaches. To better understand genotype–phenotype correlation, more reports of patients and their mutations with elucidated molecular mechanism are needed. We studied 104 patients with infantile-onset pharmacoresistant epilepsy who underwent exome or genome sequencing. Nine patients with neonatal-onset seizures from unrelated families were found to harbor pathogenic or likely pathogenic variants in the KCNQ2 gene. The p.(N258K) was recently reported, and p. (G279D) has never been previously reported. Functional effect of p.(N258K) and p.(G279D) has never been previously studied. The cellular localization study demonstrated that the surface membrane expression of Kv7.2 carrying either variant was decreased. Whole-cell patch-clamp analyses revealed that both variants significantly impaired Kv7.2 M-current amplitude and density, conductance depolarizing shift in voltage dependence of activation, membrane resistance, and membrane time constant (Tau), indicating a loss-of-function in both the homotetrameric and heterotetrameric with Kv7.3 channels. In addition, both variants exerted dominant-negative effects in heterotetrameric with Kv7.3 channels. This study expands the mutational spectrum of KCNQ2- related epilepsy and their functional consequences provide insights into their pathomechanism. Nature Publishing Group UK 2023-02-27 /pmc/articles/PMC9971330/ /pubmed/36849527 http://dx.doi.org/10.1038/s41598-023-29924-y Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Chokvithaya, Suphalak
Caengprasath, Natarin
Buasong, Aayalida
Jantasuwan, Supavadee
Santawong, Kanokwan
Leela-adisorn, Netchanok
Tongkobpetch, Siraprapa
Ittiwut, Chupong
Saengow, Vitchayaporn Emarach
Kamolvisit, Wuttichart
Boonsimma, Ponghatai
Bongsebandhu-phubhakdi, Saknan
Shotelersuk, Vorasuk
Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title_full Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title_fullStr Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title_full_unstemmed Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title_short Nine patients with KCNQ2-related neonatal seizures and functional studies of two missense variants
title_sort nine patients with kcnq2-related neonatal seizures and functional studies of two missense variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9971330/
https://www.ncbi.nlm.nih.gov/pubmed/36849527
http://dx.doi.org/10.1038/s41598-023-29924-y
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