Cargando…

The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells

In the present study we evaluated the expression of the intermediate conductance calcium-activated potassium (KCa3.1) channel in human glioblastoma stem-like cells (CSCs) and investigated its role in cell motility. While the KCa3.1 channel is not expressed in neuronal- and glial-derived tissues of h...

Descripción completa

Detalles Bibliográficos
Autores principales: Ruggieri, Paola, Mangino, Giorgio, Fioretti, Bernard, Catacuzzeno, Luigi, Puca, Rosa, Ponti, Donatella, Miscusi, Massimo, Franciolini, Fabio, Ragona, Giuseppe, Calogero, Antonella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3478269/
https://www.ncbi.nlm.nih.gov/pubmed/23110108
http://dx.doi.org/10.1371/journal.pone.0047825
_version_ 1782247300343529472
author Ruggieri, Paola
Mangino, Giorgio
Fioretti, Bernard
Catacuzzeno, Luigi
Puca, Rosa
Ponti, Donatella
Miscusi, Massimo
Franciolini, Fabio
Ragona, Giuseppe
Calogero, Antonella
author_facet Ruggieri, Paola
Mangino, Giorgio
Fioretti, Bernard
Catacuzzeno, Luigi
Puca, Rosa
Ponti, Donatella
Miscusi, Massimo
Franciolini, Fabio
Ragona, Giuseppe
Calogero, Antonella
author_sort Ruggieri, Paola
collection PubMed
description In the present study we evaluated the expression of the intermediate conductance calcium-activated potassium (KCa3.1) channel in human glioblastoma stem-like cells (CSCs) and investigated its role in cell motility. While the KCa3.1 channel is not expressed in neuronal- and glial-derived tissues of healthy individuals, both the KCa3.1 mRNA and protein are present in the glioblastoma tumor population, and are significantly enhanced in CSCs derived from both established cell line U87MG and a primary cell line, FCN9. Consistent with these data, voltage-independent and TRAM-34 sensitive potassium currents imputable to the KCa3.1 channel were recorded in the murine GL261 cell line and several primary human glioblastoma cells lines. Moreover, a significantly higher KCa3.1 current was recorded in U87MG-CD133 positive cells as compared to the U87MG-CD133 negative subpopulation. Further, we found that the tumor cell motility is strongly associated with KCa3.1 channel expression. Blockade of the KCa3.1 channel with the specific inhibitor TRAM-34 has in fact a greater impact on the motility of CSCs (reduction of 75%), which express a high level of KCa3.1 channel, than on the FCN9 parental population (reduction of 32%), where the KCa3.1 channel is expressed at lower level. Similar results were also observed with the CSCs derived from U87MG. Because invasion of surrounding tissues is one of the main causes of treatment failure in glioblastoma, these findings can be relevant for future development of novel cancer therapeutic drugs.
format Online
Article
Text
id pubmed-3478269
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34782692012-10-29 The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells Ruggieri, Paola Mangino, Giorgio Fioretti, Bernard Catacuzzeno, Luigi Puca, Rosa Ponti, Donatella Miscusi, Massimo Franciolini, Fabio Ragona, Giuseppe Calogero, Antonella PLoS One Research Article In the present study we evaluated the expression of the intermediate conductance calcium-activated potassium (KCa3.1) channel in human glioblastoma stem-like cells (CSCs) and investigated its role in cell motility. While the KCa3.1 channel is not expressed in neuronal- and glial-derived tissues of healthy individuals, both the KCa3.1 mRNA and protein are present in the glioblastoma tumor population, and are significantly enhanced in CSCs derived from both established cell line U87MG and a primary cell line, FCN9. Consistent with these data, voltage-independent and TRAM-34 sensitive potassium currents imputable to the KCa3.1 channel were recorded in the murine GL261 cell line and several primary human glioblastoma cells lines. Moreover, a significantly higher KCa3.1 current was recorded in U87MG-CD133 positive cells as compared to the U87MG-CD133 negative subpopulation. Further, we found that the tumor cell motility is strongly associated with KCa3.1 channel expression. Blockade of the KCa3.1 channel with the specific inhibitor TRAM-34 has in fact a greater impact on the motility of CSCs (reduction of 75%), which express a high level of KCa3.1 channel, than on the FCN9 parental population (reduction of 32%), where the KCa3.1 channel is expressed at lower level. Similar results were also observed with the CSCs derived from U87MG. Because invasion of surrounding tissues is one of the main causes of treatment failure in glioblastoma, these findings can be relevant for future development of novel cancer therapeutic drugs. Public Library of Science 2012-10-22 /pmc/articles/PMC3478269/ /pubmed/23110108 http://dx.doi.org/10.1371/journal.pone.0047825 Text en © 2012 Ruggieri 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ruggieri, Paola
Mangino, Giorgio
Fioretti, Bernard
Catacuzzeno, Luigi
Puca, Rosa
Ponti, Donatella
Miscusi, Massimo
Franciolini, Fabio
Ragona, Giuseppe
Calogero, Antonella
The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title_full The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title_fullStr The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title_full_unstemmed The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title_short The Inhibition of KCa3.1 Channels Activity Reduces Cell Motility in Glioblastoma Derived Cancer Stem Cells
title_sort inhibition of kca3.1 channels activity reduces cell motility in glioblastoma derived cancer stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3478269/
https://www.ncbi.nlm.nih.gov/pubmed/23110108
http://dx.doi.org/10.1371/journal.pone.0047825
work_keys_str_mv AT ruggieripaola theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT manginogiorgio theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT fiorettibernard theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT catacuzzenoluigi theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT pucarosa theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT pontidonatella theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT miscusimassimo theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT franciolinifabio theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT ragonagiuseppe theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT calogeroantonella theinhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT ruggieripaola inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT manginogiorgio inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT fiorettibernard inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT catacuzzenoluigi inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT pucarosa inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT pontidonatella inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT miscusimassimo inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT franciolinifabio inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT ragonagiuseppe inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells
AT calogeroantonella inhibitionofkca31channelsactivityreducescellmotilityinglioblastomaderivedcancerstemcells