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Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels

Changes in the expression of potassium (K(+)) channels is a pivotal event during skeletal muscle differentiation. In mouse C(2)C(12) cells, similarly to human skeletal muscle cells, myotube formation increased the expression of K(v)7.1, K(v)7.3, and K(v)7.4, the last showing the highest degree of re...

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Autores principales: Iannotti, Fabio Arturo, Barrese, Vincenzo, Formisano, Luigi, Miceli, Francesco, Taglialatela, Maurizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3564528/
https://www.ncbi.nlm.nih.gov/pubmed/23242999
http://dx.doi.org/10.1091/mbc.E11-12-1044
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author Iannotti, Fabio Arturo
Barrese, Vincenzo
Formisano, Luigi
Miceli, Francesco
Taglialatela, Maurizio
author_facet Iannotti, Fabio Arturo
Barrese, Vincenzo
Formisano, Luigi
Miceli, Francesco
Taglialatela, Maurizio
author_sort Iannotti, Fabio Arturo
collection PubMed
description Changes in the expression of potassium (K(+)) channels is a pivotal event during skeletal muscle differentiation. In mouse C(2)C(12) cells, similarly to human skeletal muscle cells, myotube formation increased the expression of K(v)7.1, K(v)7.3, and K(v)7.4, the last showing the highest degree of regulation. In C(2)C(12) cells, K(v)7.4 silencing by RNA interference reduced the expression levels of differentiation markers (myogenin, myosin heavy chain, troponinT-1, and Pax3) and impaired myotube formation and multinucleation. In K(v)7.4-silenced cells, the differentiation-promoting effect of the K(v)7 activator N-(2-amino-4-(4-fluorobenzylamino)-phenyl)-carbamic acid ethyl ester (retigabine) was abrogated. Expression levels for the repressor element-1 silencing transcription factor (REST) declined during myotube formation. Transcript levels for K(v)7.4, as well as for myogenin, troponinT-1, and Pax3, were reduced by REST overexpression and enhanced upon REST suppression by RNA interference. Four regions containing potential REST-binding sites in the 5′ untranslated region and in the first intron of the K(v)7.4 gene were identified by bioinformatic analysis. Chromatin immunoprecipitation assays showed that REST binds to these regions, exhibiting a higher efficiency in myoblasts than in myotubes. These data suggest that K(v)7.4 plays a permissive role in skeletal muscle differentiation and highlight REST as a crucial transcriptional regulator for this K(+) channel subunit.
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spelling pubmed-35645282013-04-16 Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels Iannotti, Fabio Arturo Barrese, Vincenzo Formisano, Luigi Miceli, Francesco Taglialatela, Maurizio Mol Biol Cell Articles Changes in the expression of potassium (K(+)) channels is a pivotal event during skeletal muscle differentiation. In mouse C(2)C(12) cells, similarly to human skeletal muscle cells, myotube formation increased the expression of K(v)7.1, K(v)7.3, and K(v)7.4, the last showing the highest degree of regulation. In C(2)C(12) cells, K(v)7.4 silencing by RNA interference reduced the expression levels of differentiation markers (myogenin, myosin heavy chain, troponinT-1, and Pax3) and impaired myotube formation and multinucleation. In K(v)7.4-silenced cells, the differentiation-promoting effect of the K(v)7 activator N-(2-amino-4-(4-fluorobenzylamino)-phenyl)-carbamic acid ethyl ester (retigabine) was abrogated. Expression levels for the repressor element-1 silencing transcription factor (REST) declined during myotube formation. Transcript levels for K(v)7.4, as well as for myogenin, troponinT-1, and Pax3, were reduced by REST overexpression and enhanced upon REST suppression by RNA interference. Four regions containing potential REST-binding sites in the 5′ untranslated region and in the first intron of the K(v)7.4 gene were identified by bioinformatic analysis. Chromatin immunoprecipitation assays showed that REST binds to these regions, exhibiting a higher efficiency in myoblasts than in myotubes. These data suggest that K(v)7.4 plays a permissive role in skeletal muscle differentiation and highlight REST as a crucial transcriptional regulator for this K(+) channel subunit. The American Society for Cell Biology 2013-02-01 /pmc/articles/PMC3564528/ /pubmed/23242999 http://dx.doi.org/10.1091/mbc.E11-12-1044 Text en © 2013 Iannotti et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society of Cell Biology.
spellingShingle Articles
Iannotti, Fabio Arturo
Barrese, Vincenzo
Formisano, Luigi
Miceli, Francesco
Taglialatela, Maurizio
Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title_full Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title_fullStr Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title_full_unstemmed Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title_short Specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (REST)-regulated K(v)7.4 potassium channels
title_sort specification of skeletal muscle differentiation by repressor element-1 silencing transcription factor (rest)-regulated k(v)7.4 potassium channels
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3564528/
https://www.ncbi.nlm.nih.gov/pubmed/23242999
http://dx.doi.org/10.1091/mbc.E11-12-1044
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