Cargando…

Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10

Searching for new strategies for effective elimination of human prostate cancer cells, we investigated the cooperative cytotoxic action of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and two platinum-based complexes, cisplatin or LA-12, and related molecular mechanisms. We demons...

Descripción completa

Detalles Bibliográficos
Autores principales: Vondálová Blanářová, Olga, Šafaříková, Barbora, Herůdková, Jarmila, Krkoška, Martin, Tománková, Silvie, Kahounová, Zuzana, Anděra, Ladislav, Bouchal, Jan, Kharaishvili, Gvantsa, Král, Milan, Sova, Petr, Kozubík, Alois, Hyršlová Vaculová, Alena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5705153/
https://www.ncbi.nlm.nih.gov/pubmed/29182622
http://dx.doi.org/10.1371/journal.pone.0188584
_version_ 1783282011171979264
author Vondálová Blanářová, Olga
Šafaříková, Barbora
Herůdková, Jarmila
Krkoška, Martin
Tománková, Silvie
Kahounová, Zuzana
Anděra, Ladislav
Bouchal, Jan
Kharaishvili, Gvantsa
Král, Milan
Sova, Petr
Kozubík, Alois
Hyršlová Vaculová, Alena
author_facet Vondálová Blanářová, Olga
Šafaříková, Barbora
Herůdková, Jarmila
Krkoška, Martin
Tománková, Silvie
Kahounová, Zuzana
Anděra, Ladislav
Bouchal, Jan
Kharaishvili, Gvantsa
Král, Milan
Sova, Petr
Kozubík, Alois
Hyršlová Vaculová, Alena
author_sort Vondálová Blanářová, Olga
collection PubMed
description Searching for new strategies for effective elimination of human prostate cancer cells, we investigated the cooperative cytotoxic action of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and two platinum-based complexes, cisplatin or LA-12, and related molecular mechanisms. We demonstrated a notable ability of cisplatin or LA-12 to enhance the sensitivity of several human prostate cancer cell lines to TRAIL-induced cell death via an engagement of mitochondrial apoptotic pathway. This was accompanied by augmented Bid cleavage, Bak activation, loss of mitochondrial membrane potential, activation of caspase-8, -10, -9, and -3, and XIAP cleavage. RNAi-mediated silencing of Bid or Bak in Bax-deficient DU 145 cells suppressed the drug combination-induced cytotoxicity, further underscoring the involvement of mitochondrial signaling. The caspase-10 was dispensable for enhancement of cisplatin/LA-12 and TRAIL combination-induced cell death and stimulation of Bid cleavage. Importantly, we newly demonstrated LA-12-mediated enhancement of TRAIL-induced cell death in cancer cells derived from human patient prostate tumor specimens. Our results provide convincing evidence that employing TRAIL combined with cisplatin/LA-12 could contribute to more effective killing of prostate cancer cells compared to the individual action of the drugs, and offer new mechanistic insights into their cooperative anticancer action.
format Online
Article
Text
id pubmed-5705153
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-57051532017-12-08 Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10 Vondálová Blanářová, Olga Šafaříková, Barbora Herůdková, Jarmila Krkoška, Martin Tománková, Silvie Kahounová, Zuzana Anděra, Ladislav Bouchal, Jan Kharaishvili, Gvantsa Král, Milan Sova, Petr Kozubík, Alois Hyršlová Vaculová, Alena PLoS One Research Article Searching for new strategies for effective elimination of human prostate cancer cells, we investigated the cooperative cytotoxic action of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and two platinum-based complexes, cisplatin or LA-12, and related molecular mechanisms. We demonstrated a notable ability of cisplatin or LA-12 to enhance the sensitivity of several human prostate cancer cell lines to TRAIL-induced cell death via an engagement of mitochondrial apoptotic pathway. This was accompanied by augmented Bid cleavage, Bak activation, loss of mitochondrial membrane potential, activation of caspase-8, -10, -9, and -3, and XIAP cleavage. RNAi-mediated silencing of Bid or Bak in Bax-deficient DU 145 cells suppressed the drug combination-induced cytotoxicity, further underscoring the involvement of mitochondrial signaling. The caspase-10 was dispensable for enhancement of cisplatin/LA-12 and TRAIL combination-induced cell death and stimulation of Bid cleavage. Importantly, we newly demonstrated LA-12-mediated enhancement of TRAIL-induced cell death in cancer cells derived from human patient prostate tumor specimens. Our results provide convincing evidence that employing TRAIL combined with cisplatin/LA-12 could contribute to more effective killing of prostate cancer cells compared to the individual action of the drugs, and offer new mechanistic insights into their cooperative anticancer action. Public Library of Science 2017-11-28 /pmc/articles/PMC5705153/ /pubmed/29182622 http://dx.doi.org/10.1371/journal.pone.0188584 Text en © 2017 Vondálová Blanářová 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
Vondálová Blanářová, Olga
Šafaříková, Barbora
Herůdková, Jarmila
Krkoška, Martin
Tománková, Silvie
Kahounová, Zuzana
Anděra, Ladislav
Bouchal, Jan
Kharaishvili, Gvantsa
Král, Milan
Sova, Petr
Kozubík, Alois
Hyršlová Vaculová, Alena
Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title_full Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title_fullStr Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title_full_unstemmed Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title_short Cisplatin or LA-12 enhance killing effects of TRAIL in prostate cancer cells through Bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
title_sort cisplatin or la-12 enhance killing effects of trail in prostate cancer cells through bid-dependent stimulation of mitochondrial apoptotic pathway but not caspase-10
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5705153/
https://www.ncbi.nlm.nih.gov/pubmed/29182622
http://dx.doi.org/10.1371/journal.pone.0188584
work_keys_str_mv AT vondalovablanarovaolga cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT safarikovabarbora cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT herudkovajarmila cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT krkoskamartin cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT tomankovasilvie cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT kahounovazuzana cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT anderaladislav cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT bouchaljan cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT kharaishviligvantsa cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT kralmilan cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT sovapetr cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT kozubikalois cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10
AT hyrslovavaculovaalena cisplatinorla12enhancekillingeffectsoftrailinprostatecancercellsthroughbiddependentstimulationofmitochondrialapoptoticpathwaybutnotcaspase10