Cargando…

Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer

Lysosomotropic agent chloroquine was shown to sensitize non-stem glioblastoma cells to radiation in vitro with p53-dependent apoptosis implicated as one of the underlying mechanisms. The in vivo outcomes of chloroquine or its effects on glioblastoma stem cells have not been previously addressed. Thi...

Descripción completa

Detalles Bibliográficos
Autores principales: Müller, Andreas, Weyerhäuser, Patrick, Berte, Nancy, Jonin, Fitriasari, Lyubarskyy, Bogdan, Sprang, Bettina, Kantelhardt, Sven Rainer, Salinas, Gabriela, Opitz, Lennart, Schulz-Schaeffer, Walter, Giese, Alf, Kim, Ella L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177603/
https://www.ncbi.nlm.nih.gov/pubmed/37174691
http://dx.doi.org/10.3390/cells12091290
_version_ 1785040677781897216
author Müller, Andreas
Weyerhäuser, Patrick
Berte, Nancy
Jonin, Fitriasari
Lyubarskyy, Bogdan
Sprang, Bettina
Kantelhardt, Sven Rainer
Salinas, Gabriela
Opitz, Lennart
Schulz-Schaeffer, Walter
Giese, Alf
Kim, Ella L.
author_facet Müller, Andreas
Weyerhäuser, Patrick
Berte, Nancy
Jonin, Fitriasari
Lyubarskyy, Bogdan
Sprang, Bettina
Kantelhardt, Sven Rainer
Salinas, Gabriela
Opitz, Lennart
Schulz-Schaeffer, Walter
Giese, Alf
Kim, Ella L.
author_sort Müller, Andreas
collection PubMed
description Lysosomotropic agent chloroquine was shown to sensitize non-stem glioblastoma cells to radiation in vitro with p53-dependent apoptosis implicated as one of the underlying mechanisms. The in vivo outcomes of chloroquine or its effects on glioblastoma stem cells have not been previously addressed. This study undertakes a combinatorial approach encompassing in vitro, in vivo and in silico investigations to address the relationship between chloroquine-mediated radiosensitization and p53 status in glioblastoma stem cells. Our findings reveal that chloroquine elicits antagonistic impacts on signaling pathways involved in the regulation of cell fate via both transcription-dependent and transcription-independent mechanisms. Evidence is provided that transcriptional impacts of chloroquine are primarily determined by p53 with chloroquine-mediated activation of pro-survival mevalonate and p21-DREAM pathways being the dominant response in the background of wild type p53. Non-transcriptional effects of chloroquine are conserved and converge on key cell fate regulators ATM, HIPK2 and AKT in glioblastoma stem cells irrespective of their p53 status. Our findings indicate that pro-survival responses elicited by chloroquine predominate in the context of wild type p53 and are diminished in cells with transcriptionally impaired p53. We conclude that p53 is an important determinant of the balance between pro-survival and pro-death impacts of chloroquine and propose that p53 functional status should be taken into consideration when evaluating the efficacy of glioblastoma radiosensitization by chloroquine.
format Online
Article
Text
id pubmed-10177603
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101776032023-05-13 Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer Müller, Andreas Weyerhäuser, Patrick Berte, Nancy Jonin, Fitriasari Lyubarskyy, Bogdan Sprang, Bettina Kantelhardt, Sven Rainer Salinas, Gabriela Opitz, Lennart Schulz-Schaeffer, Walter Giese, Alf Kim, Ella L. Cells Article Lysosomotropic agent chloroquine was shown to sensitize non-stem glioblastoma cells to radiation in vitro with p53-dependent apoptosis implicated as one of the underlying mechanisms. The in vivo outcomes of chloroquine or its effects on glioblastoma stem cells have not been previously addressed. This study undertakes a combinatorial approach encompassing in vitro, in vivo and in silico investigations to address the relationship between chloroquine-mediated radiosensitization and p53 status in glioblastoma stem cells. Our findings reveal that chloroquine elicits antagonistic impacts on signaling pathways involved in the regulation of cell fate via both transcription-dependent and transcription-independent mechanisms. Evidence is provided that transcriptional impacts of chloroquine are primarily determined by p53 with chloroquine-mediated activation of pro-survival mevalonate and p21-DREAM pathways being the dominant response in the background of wild type p53. Non-transcriptional effects of chloroquine are conserved and converge on key cell fate regulators ATM, HIPK2 and AKT in glioblastoma stem cells irrespective of their p53 status. Our findings indicate that pro-survival responses elicited by chloroquine predominate in the context of wild type p53 and are diminished in cells with transcriptionally impaired p53. We conclude that p53 is an important determinant of the balance between pro-survival and pro-death impacts of chloroquine and propose that p53 functional status should be taken into consideration when evaluating the efficacy of glioblastoma radiosensitization by chloroquine. MDPI 2023-04-30 /pmc/articles/PMC10177603/ /pubmed/37174691 http://dx.doi.org/10.3390/cells12091290 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Müller, Andreas
Weyerhäuser, Patrick
Berte, Nancy
Jonin, Fitriasari
Lyubarskyy, Bogdan
Sprang, Bettina
Kantelhardt, Sven Rainer
Salinas, Gabriela
Opitz, Lennart
Schulz-Schaeffer, Walter
Giese, Alf
Kim, Ella L.
Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title_full Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title_fullStr Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title_full_unstemmed Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title_short Concurrent Activation of Both Survival-Promoting and Death-Inducing Signaling by Chloroquine in Glioblastoma Stem Cells: Implications for Potential Risks and Benefits of Using Chloroquine as Radiosensitizer
title_sort concurrent activation of both survival-promoting and death-inducing signaling by chloroquine in glioblastoma stem cells: implications for potential risks and benefits of using chloroquine as radiosensitizer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177603/
https://www.ncbi.nlm.nih.gov/pubmed/37174691
http://dx.doi.org/10.3390/cells12091290
work_keys_str_mv AT mullerandreas concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT weyerhauserpatrick concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT bertenancy concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT joninfitriasari concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT lyubarskyybogdan concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT sprangbettina concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT kantelhardtsvenrainer concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT salinasgabriela concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT opitzlennart concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT schulzschaefferwalter concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT giesealf concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer
AT kimellal concurrentactivationofbothsurvivalpromotinganddeathinducingsignalingbychloroquineinglioblastomastemcellsimplicationsforpotentialrisksandbenefitsofusingchloroquineasradiosensitizer