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Independent transcriptional reprogramming and apoptosis induction by cisplatin

NEITHER THE MOLECULAR MECHANISMS WHEREBY CANCER CELLS INTRINSICALLY ARE OR BECOME RESISTANT TO THE DNA-DAMAGING AGENT CISPLATIN NOR THE SIGNALING PATHWAYS THAT ACCOUNT FOR CISPLATIN CYTOTOXICITY HAVE THUS FAR BEEN CHARACTERIZED IN DETAIL. IN AN ATTEMPT TO GAIN FURTHER INSIGHTS INTO THE MOLECULAR CAS...

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Autores principales: Galluzzi, Lorenzo, Vitale, Ilio, Senovilla, Laura, Eisenberg, Tobias, Carmona-Gutierrez, Didac, Vacchelli, Erika, Robert, Thomas, Ripoche, Hugues, Jägemann, Nora, Paccard, Caroline, Servant, Nicolas, Hupé, Philippe, Lazar, Vladimir, Dessen, Philippe, Barillot, Emmanuel, Zischka, Hans, Madeo, Frank, Kroemer, Guido
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466557/
https://www.ncbi.nlm.nih.gov/pubmed/22918244
http://dx.doi.org/10.4161/cc.21789
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author Galluzzi, Lorenzo
Vitale, Ilio
Senovilla, Laura
Eisenberg, Tobias
Carmona-Gutierrez, Didac
Vacchelli, Erika
Robert, Thomas
Ripoche, Hugues
Jägemann, Nora
Paccard, Caroline
Servant, Nicolas
Hupé, Philippe
Lazar, Vladimir
Dessen, Philippe
Barillot, Emmanuel
Zischka, Hans
Madeo, Frank
Kroemer, Guido
author_facet Galluzzi, Lorenzo
Vitale, Ilio
Senovilla, Laura
Eisenberg, Tobias
Carmona-Gutierrez, Didac
Vacchelli, Erika
Robert, Thomas
Ripoche, Hugues
Jägemann, Nora
Paccard, Caroline
Servant, Nicolas
Hupé, Philippe
Lazar, Vladimir
Dessen, Philippe
Barillot, Emmanuel
Zischka, Hans
Madeo, Frank
Kroemer, Guido
author_sort Galluzzi, Lorenzo
collection PubMed
description NEITHER THE MOLECULAR MECHANISMS WHEREBY CANCER CELLS INTRINSICALLY ARE OR BECOME RESISTANT TO THE DNA-DAMAGING AGENT CISPLATIN NOR THE SIGNALING PATHWAYS THAT ACCOUNT FOR CISPLATIN CYTOTOXICITY HAVE THUS FAR BEEN CHARACTERIZED IN DETAIL. IN AN ATTEMPT TO GAIN FURTHER INSIGHTS INTO THE MOLECULAR CASCADES ELICITED BY CISPLATIN (LEADING TO RESISTANCE OR UNDERPINNING ITS ANTINEOPLASTIC PROPERTIES), WE COMPARATIVELY INVESTIGATED THE ABILITY OF CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE, ALONE OR IN THE PRESENCE OF AN ARRAY OF MITOCHONDRION-PROTECTIVE AGENTS, TO TRIGGER THE PERMEABILIZATION OF PURIFIED MITOCHONDRIA. IN ADDITION, WE COMPARED THE TRANSCRIPTIONAL RESPONSE TRIGGERED BY CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE IN NON-SMALL CELL LUNG CARCINOMA A549 CELLS. FINALLY, WE ASSESSED THE CAPACITY OF CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE TO REDUCE THE CLONOGENIC POTENTIAL OF A BATTERY OF YEAST STRAINS LACKING PROTEINS INVOLVED IN THE REGULATION OF CELL DEATH, DNA DAMAGE SIGNALING AND STRESS MANAGEMENT. THIS MULTIPRONGED EXPERIMENTAL APPROACH REVEALED THAT CISPLATIN ELICITS SIGNALING PATHWAYS THAT ARE FOR THE MOST PART “PRIVATE,” I.E., THAT MANIFEST LIMITED OVERLAP WITH THE MOLECULAR CASCADES IGNITED BY OTHER INDUCERS OF MITOCHONDRIAL APOPTOSIS, AND TRIGGERS APOPTOSIS MAINLY IN A TRANSCRIPTION-INDEPENDENT FASHION. INDEED, BONA FIDE CISPLATIN-RESPONSE MODIFIERS THAT WE HAVE RECENTLY IDENTIFIED BY A FUNCTIONAL GENOME-WIDE SIRNA SCREEN ARE EITHER NOT TRANSCRIPTIONALLY REGULATED DURING CISPLATIN-INDUCED CELL DEATH OR THEIR TRANSCRIPTIONAL MODULATION REFLECTS THE ACTIVATION OF AN ADAPTIVE RESPONSE PROMOTING CISPLATIN RESISTANCE:
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spelling pubmed-34665572012-10-19 Independent transcriptional reprogramming and apoptosis induction by cisplatin Galluzzi, Lorenzo Vitale, Ilio Senovilla, Laura Eisenberg, Tobias Carmona-Gutierrez, Didac Vacchelli, Erika Robert, Thomas Ripoche, Hugues Jägemann, Nora Paccard, Caroline Servant, Nicolas Hupé, Philippe Lazar, Vladimir Dessen, Philippe Barillot, Emmanuel Zischka, Hans Madeo, Frank Kroemer, Guido Cell Cycle Report NEITHER THE MOLECULAR MECHANISMS WHEREBY CANCER CELLS INTRINSICALLY ARE OR BECOME RESISTANT TO THE DNA-DAMAGING AGENT CISPLATIN NOR THE SIGNALING PATHWAYS THAT ACCOUNT FOR CISPLATIN CYTOTOXICITY HAVE THUS FAR BEEN CHARACTERIZED IN DETAIL. IN AN ATTEMPT TO GAIN FURTHER INSIGHTS INTO THE MOLECULAR CASCADES ELICITED BY CISPLATIN (LEADING TO RESISTANCE OR UNDERPINNING ITS ANTINEOPLASTIC PROPERTIES), WE COMPARATIVELY INVESTIGATED THE ABILITY OF CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE, ALONE OR IN THE PRESENCE OF AN ARRAY OF MITOCHONDRION-PROTECTIVE AGENTS, TO TRIGGER THE PERMEABILIZATION OF PURIFIED MITOCHONDRIA. IN ADDITION, WE COMPARED THE TRANSCRIPTIONAL RESPONSE TRIGGERED BY CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE IN NON-SMALL CELL LUNG CARCINOMA A549 CELLS. FINALLY, WE ASSESSED THE CAPACITY OF CISPLATIN, C2-CERAMIDE AND CADMIUM DICHLORIDE TO REDUCE THE CLONOGENIC POTENTIAL OF A BATTERY OF YEAST STRAINS LACKING PROTEINS INVOLVED IN THE REGULATION OF CELL DEATH, DNA DAMAGE SIGNALING AND STRESS MANAGEMENT. THIS MULTIPRONGED EXPERIMENTAL APPROACH REVEALED THAT CISPLATIN ELICITS SIGNALING PATHWAYS THAT ARE FOR THE MOST PART “PRIVATE,” I.E., THAT MANIFEST LIMITED OVERLAP WITH THE MOLECULAR CASCADES IGNITED BY OTHER INDUCERS OF MITOCHONDRIAL APOPTOSIS, AND TRIGGERS APOPTOSIS MAINLY IN A TRANSCRIPTION-INDEPENDENT FASHION. INDEED, BONA FIDE CISPLATIN-RESPONSE MODIFIERS THAT WE HAVE RECENTLY IDENTIFIED BY A FUNCTIONAL GENOME-WIDE SIRNA SCREEN ARE EITHER NOT TRANSCRIPTIONALLY REGULATED DURING CISPLATIN-INDUCED CELL DEATH OR THEIR TRANSCRIPTIONAL MODULATION REFLECTS THE ACTIVATION OF AN ADAPTIVE RESPONSE PROMOTING CISPLATIN RESISTANCE: Landes Bioscience 2012-09-15 /pmc/articles/PMC3466557/ /pubmed/22918244 http://dx.doi.org/10.4161/cc.21789 Text en Copyright © 2012 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Galluzzi, Lorenzo
Vitale, Ilio
Senovilla, Laura
Eisenberg, Tobias
Carmona-Gutierrez, Didac
Vacchelli, Erika
Robert, Thomas
Ripoche, Hugues
Jägemann, Nora
Paccard, Caroline
Servant, Nicolas
Hupé, Philippe
Lazar, Vladimir
Dessen, Philippe
Barillot, Emmanuel
Zischka, Hans
Madeo, Frank
Kroemer, Guido
Independent transcriptional reprogramming and apoptosis induction by cisplatin
title Independent transcriptional reprogramming and apoptosis induction by cisplatin
title_full Independent transcriptional reprogramming and apoptosis induction by cisplatin
title_fullStr Independent transcriptional reprogramming and apoptosis induction by cisplatin
title_full_unstemmed Independent transcriptional reprogramming and apoptosis induction by cisplatin
title_short Independent transcriptional reprogramming and apoptosis induction by cisplatin
title_sort independent transcriptional reprogramming and apoptosis induction by cisplatin
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466557/
https://www.ncbi.nlm.nih.gov/pubmed/22918244
http://dx.doi.org/10.4161/cc.21789
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