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Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity

A major challenge is to understand maladaptive changes in ion channels that sets neurons on a course towards epilepsy development. Voltage- and calcium-activated K+ (BK) channels contribute to early spike timing in neurons, and studies indicate that the BK channel plays a pathological role in increa...

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Autores principales: Whitmire, Luke E., Ling, Ling, Bugay, Vladslav, Carver, Chase M., Timilsina, Santosh, Chuang, Hui-Hsiu, Jaffe, David B., Shapiro, Mark S., Cavazos, Jose E., Brenner, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5690595/
https://www.ncbi.nlm.nih.gov/pubmed/29145442
http://dx.doi.org/10.1371/journal.pone.0188064
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author Whitmire, Luke E.
Ling, Ling
Bugay, Vladslav
Carver, Chase M.
Timilsina, Santosh
Chuang, Hui-Hsiu
Jaffe, David B.
Shapiro, Mark S.
Cavazos, Jose E.
Brenner, Robert
author_facet Whitmire, Luke E.
Ling, Ling
Bugay, Vladslav
Carver, Chase M.
Timilsina, Santosh
Chuang, Hui-Hsiu
Jaffe, David B.
Shapiro, Mark S.
Cavazos, Jose E.
Brenner, Robert
author_sort Whitmire, Luke E.
collection PubMed
description A major challenge is to understand maladaptive changes in ion channels that sets neurons on a course towards epilepsy development. Voltage- and calcium-activated K+ (BK) channels contribute to early spike timing in neurons, and studies indicate that the BK channel plays a pathological role in increasing excitability early after a seizure. Here, we have investigated changes in BK channels and their accessory β4 subunit (KCNMB4) in dentate gyrus (DG) granule neurons of the hippocampus, key neurons that regulate excitability of the hippocampus circuit. Two days after pilocarpine-induced seizures, we found that the predominant effect is a downregulation of the β4 accessory subunit mRNA. Consistent with reduced expression, single channel recording and pharmacology indicate a switch in the subtype of channels expressed; from iberiotoxin-resistant, type II BK channels (BK α/β4) that have higher channel open probability and slow gating, to iberiotoxin-sensitive type I channels (BK α alone) with low open probability and faster gating. The switch to a majority of type I channel expression following seizure activity is correlated with a loss of BK channel function on spike threshold while maintaining the channel’s contribution to increased early spike frequency. Using heterozygous β4 knockout mice, we find reduced expression is sufficient to increase seizure sensitivity. We conclude that seizure-induced downregulation of KCNMB4 is an activity dependent mechanism that increases the excitability of DG neurons. These novel findings indicate that BK channel subtypes are not only defined by cell-specific expression, but can also be plastic depending on the recent history of neuronal excitability.
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spelling pubmed-56905952017-11-30 Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity Whitmire, Luke E. Ling, Ling Bugay, Vladslav Carver, Chase M. Timilsina, Santosh Chuang, Hui-Hsiu Jaffe, David B. Shapiro, Mark S. Cavazos, Jose E. Brenner, Robert PLoS One Research Article A major challenge is to understand maladaptive changes in ion channels that sets neurons on a course towards epilepsy development. Voltage- and calcium-activated K+ (BK) channels contribute to early spike timing in neurons, and studies indicate that the BK channel plays a pathological role in increasing excitability early after a seizure. Here, we have investigated changes in BK channels and their accessory β4 subunit (KCNMB4) in dentate gyrus (DG) granule neurons of the hippocampus, key neurons that regulate excitability of the hippocampus circuit. Two days after pilocarpine-induced seizures, we found that the predominant effect is a downregulation of the β4 accessory subunit mRNA. Consistent with reduced expression, single channel recording and pharmacology indicate a switch in the subtype of channels expressed; from iberiotoxin-resistant, type II BK channels (BK α/β4) that have higher channel open probability and slow gating, to iberiotoxin-sensitive type I channels (BK α alone) with low open probability and faster gating. The switch to a majority of type I channel expression following seizure activity is correlated with a loss of BK channel function on spike threshold while maintaining the channel’s contribution to increased early spike frequency. Using heterozygous β4 knockout mice, we find reduced expression is sufficient to increase seizure sensitivity. We conclude that seizure-induced downregulation of KCNMB4 is an activity dependent mechanism that increases the excitability of DG neurons. These novel findings indicate that BK channel subtypes are not only defined by cell-specific expression, but can also be plastic depending on the recent history of neuronal excitability. Public Library of Science 2017-11-16 /pmc/articles/PMC5690595/ /pubmed/29145442 http://dx.doi.org/10.1371/journal.pone.0188064 Text en © 2017 Whitmire et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Whitmire, Luke E.
Ling, Ling
Bugay, Vladslav
Carver, Chase M.
Timilsina, Santosh
Chuang, Hui-Hsiu
Jaffe, David B.
Shapiro, Mark S.
Cavazos, Jose E.
Brenner, Robert
Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title_full Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title_fullStr Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title_full_unstemmed Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title_short Downregulation of KCNMB4 expression and changes in BK channel subtype in hippocampal granule neurons following seizure activity
title_sort downregulation of kcnmb4 expression and changes in bk channel subtype in hippocampal granule neurons following seizure activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5690595/
https://www.ncbi.nlm.nih.gov/pubmed/29145442
http://dx.doi.org/10.1371/journal.pone.0188064
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