Cargando…

BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models

KCNMA1 forms the pore of BK K(+) channels, which regulate neuronal and muscle excitability. Recently, genetic screening identified heterozygous KCNMA1 variants in a subset of patients with debilitating paroxysmal non-kinesigenic dyskinesia, presenting with or without epilepsy (PNKD3). However, the r...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Su Mi, Roache, Cooper E, Iffland, Philip H, Moldenhauer, Hans J, Matychak, Katia K, Plante, Amber E, Lieberman, Abby G, Crino, Peter B, Meredith, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9275823/
https://www.ncbi.nlm.nih.gov/pubmed/35819138
http://dx.doi.org/10.7554/eLife.77953
_version_ 1784745570771927040
author Park, Su Mi
Roache, Cooper E
Iffland, Philip H
Moldenhauer, Hans J
Matychak, Katia K
Plante, Amber E
Lieberman, Abby G
Crino, Peter B
Meredith, Andrea
author_facet Park, Su Mi
Roache, Cooper E
Iffland, Philip H
Moldenhauer, Hans J
Matychak, Katia K
Plante, Amber E
Lieberman, Abby G
Crino, Peter B
Meredith, Andrea
author_sort Park, Su Mi
collection PubMed
description KCNMA1 forms the pore of BK K(+) channels, which regulate neuronal and muscle excitability. Recently, genetic screening identified heterozygous KCNMA1 variants in a subset of patients with debilitating paroxysmal non-kinesigenic dyskinesia, presenting with or without epilepsy (PNKD3). However, the relevance of KCNMA1 mutations and the basis for clinical heterogeneity in PNKD3 has not been established. Here, we evaluate the relative severity of three KCNMA1 patient variants in BK channels, neurons, and mice. In heterologous cells, BK(N999S) and BK(D434G) channels displayed gain-of-function (GOF) properties, whereas BK(H444Q) channels showed loss-of-function (LOF) properties. The relative degree of channel activity was BK(N999S) > BK(D434G)>WT > BK(H444Q). BK currents and action potential firing were increased, and seizure thresholds decreased, in Kcnma1(N999S/WT) and Kcnma1(D434G/WT) transgenic mice but not Kcnma1(H444Q/WT) mice. In a novel behavioral test for paroxysmal dyskinesia, the more severely affected Kcnma1(N999S/WT) mice became immobile after stress. This was abrogated by acute dextroamphetamine treatment, consistent with PNKD3-affected individuals. Homozygous Kcnma1(D434G/D434G) mice showed similar immobility, but in contrast, homozygous Kcnma1(H444Q/H444Q) mice displayed hyperkinetic behavior. These data establish the relative pathogenic potential of patient alleles as N999S>D434G>H444Q and validate Kcnma1(N999S/WT) mice as a model for PNKD3 with increased seizure propensity.
format Online
Article
Text
id pubmed-9275823
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-92758232022-07-13 BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models Park, Su Mi Roache, Cooper E Iffland, Philip H Moldenhauer, Hans J Matychak, Katia K Plante, Amber E Lieberman, Abby G Crino, Peter B Meredith, Andrea eLife Neuroscience KCNMA1 forms the pore of BK K(+) channels, which regulate neuronal and muscle excitability. Recently, genetic screening identified heterozygous KCNMA1 variants in a subset of patients with debilitating paroxysmal non-kinesigenic dyskinesia, presenting with or without epilepsy (PNKD3). However, the relevance of KCNMA1 mutations and the basis for clinical heterogeneity in PNKD3 has not been established. Here, we evaluate the relative severity of three KCNMA1 patient variants in BK channels, neurons, and mice. In heterologous cells, BK(N999S) and BK(D434G) channels displayed gain-of-function (GOF) properties, whereas BK(H444Q) channels showed loss-of-function (LOF) properties. The relative degree of channel activity was BK(N999S) > BK(D434G)>WT > BK(H444Q). BK currents and action potential firing were increased, and seizure thresholds decreased, in Kcnma1(N999S/WT) and Kcnma1(D434G/WT) transgenic mice but not Kcnma1(H444Q/WT) mice. In a novel behavioral test for paroxysmal dyskinesia, the more severely affected Kcnma1(N999S/WT) mice became immobile after stress. This was abrogated by acute dextroamphetamine treatment, consistent with PNKD3-affected individuals. Homozygous Kcnma1(D434G/D434G) mice showed similar immobility, but in contrast, homozygous Kcnma1(H444Q/H444Q) mice displayed hyperkinetic behavior. These data establish the relative pathogenic potential of patient alleles as N999S>D434G>H444Q and validate Kcnma1(N999S/WT) mice as a model for PNKD3 with increased seizure propensity. eLife Sciences Publications, Ltd 2022-07-12 /pmc/articles/PMC9275823/ /pubmed/35819138 http://dx.doi.org/10.7554/eLife.77953 Text en © 2022, Park et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Park, Su Mi
Roache, Cooper E
Iffland, Philip H
Moldenhauer, Hans J
Matychak, Katia K
Plante, Amber E
Lieberman, Abby G
Crino, Peter B
Meredith, Andrea
BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title_full BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title_fullStr BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title_full_unstemmed BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title_short BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models
title_sort bk channel properties correlate with neurobehavioral severity in three kcnma1-linked channelopathy mouse models
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9275823/
https://www.ncbi.nlm.nih.gov/pubmed/35819138
http://dx.doi.org/10.7554/eLife.77953
work_keys_str_mv AT parksumi bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT roachecoopere bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT ifflandphiliph bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT moldenhauerhansj bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT matychakkatiak bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT planteambere bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT liebermanabbyg bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT crinopeterb bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels
AT meredithandrea bkchannelpropertiescorrelatewithneurobehavioralseverityinthreekcnma1linkedchannelopathymousemodels