Cargando…

The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease

Zapotin, a tetramethoxyflavone, is a natural compound with a wide spectrum of activities in neoplastic cells. Protein kinase C epsilon (PKCε) has been shown to be oncogenic, with the ability to increase cell migration, invasion and survival of tumor cells. Here we report that zapotin inhibits cell p...

Descripción completa

Detalles Bibliográficos
Autores principales: Toton, Ewa, Lisiak, Natalia, Rubis, Blazej, Budzianowski, Jaromir, Gruber, Peter, Hofmann, Johann, Rybczynska, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318187/
https://www.ncbi.nlm.nih.gov/pubmed/22381066
http://dx.doi.org/10.1016/j.ejphar.2012.02.020
_version_ 1782228675231481856
author Toton, Ewa
Lisiak, Natalia
Rubis, Blazej
Budzianowski, Jaromir
Gruber, Peter
Hofmann, Johann
Rybczynska, Maria
author_facet Toton, Ewa
Lisiak, Natalia
Rubis, Blazej
Budzianowski, Jaromir
Gruber, Peter
Hofmann, Johann
Rybczynska, Maria
author_sort Toton, Ewa
collection PubMed
description Zapotin, a tetramethoxyflavone, is a natural compound with a wide spectrum of activities in neoplastic cells. Protein kinase C epsilon (PKCε) has been shown to be oncogenic, with the ability to increase cell migration, invasion and survival of tumor cells. Here we report that zapotin inhibits cell proliferation. In wild-type HeLa cells with basal endogenous expression of PKCε, the IC(50) was found to be 17.9 ± 1.6 μM. In HeLa cells overexpressing doxycycline-inducible constitutively active PKCε (HeLaPKCεA/E), the IC(50) was 7.6 ± 1.3 μM, suggesting that PKCε enhances the anti-proliferative effect of zapotin. Moreover, we found that zapotin selectively activated PKCε in comparison with other PKC family members, but attenuated doxycycline-induced PKCε expression. As a result of zapotin treatment for 6, 12 and 24 h, the doxycycline-induced levels of the two differently phosphorylated PKCε forms (87 kDa and 95 kDa) were decreased. Migration assays revealed that increasing concentrations of zapotin (from 3.5 to 15 μM) decreased migration of HeLaPKCεA/E cells. Furthermore, zapotin significantly increased the fraction of apoptotic cells in doxycycline-induced (HeLaPKCεA/E) cells after 24 h and decreased the levels of Bcl-2, c-Jun, c-Fos. This was accompanied by a degradation of PARP-1. In summary, activation of PKCε and down-modulation of the induced PKCε level by zapotin were associated with decreased migration and increased apoptosis. These observations are consistent with the previously reported chemopreventive and chemotherapeutic action of zapotin.
format Online
Article
Text
id pubmed-3318187
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Elsevier Science
record_format MEDLINE/PubMed
spelling pubmed-33181872012-05-05 The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease Toton, Ewa Lisiak, Natalia Rubis, Blazej Budzianowski, Jaromir Gruber, Peter Hofmann, Johann Rybczynska, Maria Eur J Pharmacol Molecular and Cellular Pharmacology Zapotin, a tetramethoxyflavone, is a natural compound with a wide spectrum of activities in neoplastic cells. Protein kinase C epsilon (PKCε) has been shown to be oncogenic, with the ability to increase cell migration, invasion and survival of tumor cells. Here we report that zapotin inhibits cell proliferation. In wild-type HeLa cells with basal endogenous expression of PKCε, the IC(50) was found to be 17.9 ± 1.6 μM. In HeLa cells overexpressing doxycycline-inducible constitutively active PKCε (HeLaPKCεA/E), the IC(50) was 7.6 ± 1.3 μM, suggesting that PKCε enhances the anti-proliferative effect of zapotin. Moreover, we found that zapotin selectively activated PKCε in comparison with other PKC family members, but attenuated doxycycline-induced PKCε expression. As a result of zapotin treatment for 6, 12 and 24 h, the doxycycline-induced levels of the two differently phosphorylated PKCε forms (87 kDa and 95 kDa) were decreased. Migration assays revealed that increasing concentrations of zapotin (from 3.5 to 15 μM) decreased migration of HeLaPKCεA/E cells. Furthermore, zapotin significantly increased the fraction of apoptotic cells in doxycycline-induced (HeLaPKCεA/E) cells after 24 h and decreased the levels of Bcl-2, c-Jun, c-Fos. This was accompanied by a degradation of PARP-1. In summary, activation of PKCε and down-modulation of the induced PKCε level by zapotin were associated with decreased migration and increased apoptosis. These observations are consistent with the previously reported chemopreventive and chemotherapeutic action of zapotin. Elsevier Science 2012-05-05 /pmc/articles/PMC3318187/ /pubmed/22381066 http://dx.doi.org/10.1016/j.ejphar.2012.02.020 Text en © 2012 Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Molecular and Cellular Pharmacology
Toton, Ewa
Lisiak, Natalia
Rubis, Blazej
Budzianowski, Jaromir
Gruber, Peter
Hofmann, Johann
Rybczynska, Maria
The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title_full The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title_fullStr The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title_full_unstemmed The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title_short The tetramethoxyflavone zapotin selectively activates protein kinase C epsilon, leading to its down-modulation accompanied by Bcl-2, c-Jun and c-Fos decrease
title_sort tetramethoxyflavone zapotin selectively activates protein kinase c epsilon, leading to its down-modulation accompanied by bcl-2, c-jun and c-fos decrease
topic Molecular and Cellular Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318187/
https://www.ncbi.nlm.nih.gov/pubmed/22381066
http://dx.doi.org/10.1016/j.ejphar.2012.02.020
work_keys_str_mv AT totonewa thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT lisiaknatalia thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT rubisblazej thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT budzianowskijaromir thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT gruberpeter thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT hofmannjohann thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT rybczynskamaria thetetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT totonewa tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT lisiaknatalia tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT rubisblazej tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT budzianowskijaromir tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT gruberpeter tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT hofmannjohann tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease
AT rybczynskamaria tetramethoxyflavonezapotinselectivelyactivatesproteinkinasecepsilonleadingtoitsdownmodulationaccompaniedbybcl2cjunandcfosdecrease