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Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism

By accentuating drug efficacy and impeding resistance mechanisms, combinatorial, multi‐agent therapies have emerged as key approaches in the treatment of complex diseases, most notably cancer. Using high‐throughput drug screens, we uncovered distinct metabolic vulnerabilities and thereby identified...

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Autores principales: Hartleben, Goetz, Schorpp, Kenji, Kwon, Yun, Betz, Barbara, Tsokanos, Foivos‐Filippos, Dantes, Zahra, Schäfer, Arlett, Rothenaigner, Ina, Monroy Kuhn, José Manuel, Morigny, Pauline, Mehr, Lisa, Lin, Sean, Seitz, Susanne, Tokarz, Janina, Artati, Anna, Adamsky, Jerzy, Plettenburg, Oliver, Lutter, Dominik, Irmler, Martin, Beckers, Johannes, Reichert, Maximilian, Hadian, Kamyar, Zeigerer, Anja, Herzig, Stephan, Berriel Diaz, Mauricio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8033521/
https://www.ncbi.nlm.nih.gov/pubmed/33665961
http://dx.doi.org/10.15252/emmm.202012461
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author Hartleben, Goetz
Schorpp, Kenji
Kwon, Yun
Betz, Barbara
Tsokanos, Foivos‐Filippos
Dantes, Zahra
Schäfer, Arlett
Rothenaigner, Ina
Monroy Kuhn, José Manuel
Morigny, Pauline
Mehr, Lisa
Lin, Sean
Seitz, Susanne
Tokarz, Janina
Artati, Anna
Adamsky, Jerzy
Plettenburg, Oliver
Lutter, Dominik
Irmler, Martin
Beckers, Johannes
Reichert, Maximilian
Hadian, Kamyar
Zeigerer, Anja
Herzig, Stephan
Berriel Diaz, Mauricio
author_facet Hartleben, Goetz
Schorpp, Kenji
Kwon, Yun
Betz, Barbara
Tsokanos, Foivos‐Filippos
Dantes, Zahra
Schäfer, Arlett
Rothenaigner, Ina
Monroy Kuhn, José Manuel
Morigny, Pauline
Mehr, Lisa
Lin, Sean
Seitz, Susanne
Tokarz, Janina
Artati, Anna
Adamsky, Jerzy
Plettenburg, Oliver
Lutter, Dominik
Irmler, Martin
Beckers, Johannes
Reichert, Maximilian
Hadian, Kamyar
Zeigerer, Anja
Herzig, Stephan
Berriel Diaz, Mauricio
author_sort Hartleben, Goetz
collection PubMed
description By accentuating drug efficacy and impeding resistance mechanisms, combinatorial, multi‐agent therapies have emerged as key approaches in the treatment of complex diseases, most notably cancer. Using high‐throughput drug screens, we uncovered distinct metabolic vulnerabilities and thereby identified drug combinations synergistically causing a starvation‐like lethal catabolic response in tumor cells from different cancer entities. Domperidone, a dopamine receptor antagonist, as well as several tricyclic antidepressants (TCAs), including imipramine, induced cancer cell death in combination with the mitochondrial uncoupler niclosamide ethanolamine (NEN) through activation of the integrated stress response pathway and the catabolic CLEAR network. Using transcriptome and metabolome analyses, we characterized a combinatorial response, mainly driven by the transcription factors CHOP and TFE3, which resulted in cell death through enhanced pyrimidine catabolism as well as reduced pyrimidine synthesis. Remarkably, the drug combinations sensitized human organoid cultures to the standard‐of‐care chemotherapy paclitaxel. Thus, our combinatorial approach could be clinically implemented into established treatment regimen, which would be further facilitated by the advantages of drug repurposing.
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spelling pubmed-80335212021-04-14 Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism Hartleben, Goetz Schorpp, Kenji Kwon, Yun Betz, Barbara Tsokanos, Foivos‐Filippos Dantes, Zahra Schäfer, Arlett Rothenaigner, Ina Monroy Kuhn, José Manuel Morigny, Pauline Mehr, Lisa Lin, Sean Seitz, Susanne Tokarz, Janina Artati, Anna Adamsky, Jerzy Plettenburg, Oliver Lutter, Dominik Irmler, Martin Beckers, Johannes Reichert, Maximilian Hadian, Kamyar Zeigerer, Anja Herzig, Stephan Berriel Diaz, Mauricio EMBO Mol Med Articles By accentuating drug efficacy and impeding resistance mechanisms, combinatorial, multi‐agent therapies have emerged as key approaches in the treatment of complex diseases, most notably cancer. Using high‐throughput drug screens, we uncovered distinct metabolic vulnerabilities and thereby identified drug combinations synergistically causing a starvation‐like lethal catabolic response in tumor cells from different cancer entities. Domperidone, a dopamine receptor antagonist, as well as several tricyclic antidepressants (TCAs), including imipramine, induced cancer cell death in combination with the mitochondrial uncoupler niclosamide ethanolamine (NEN) through activation of the integrated stress response pathway and the catabolic CLEAR network. Using transcriptome and metabolome analyses, we characterized a combinatorial response, mainly driven by the transcription factors CHOP and TFE3, which resulted in cell death through enhanced pyrimidine catabolism as well as reduced pyrimidine synthesis. Remarkably, the drug combinations sensitized human organoid cultures to the standard‐of‐care chemotherapy paclitaxel. Thus, our combinatorial approach could be clinically implemented into established treatment regimen, which would be further facilitated by the advantages of drug repurposing. John Wiley and Sons Inc. 2021-03-05 2021-04-09 /pmc/articles/PMC8033521/ /pubmed/33665961 http://dx.doi.org/10.15252/emmm.202012461 Text en © 2021 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Hartleben, Goetz
Schorpp, Kenji
Kwon, Yun
Betz, Barbara
Tsokanos, Foivos‐Filippos
Dantes, Zahra
Schäfer, Arlett
Rothenaigner, Ina
Monroy Kuhn, José Manuel
Morigny, Pauline
Mehr, Lisa
Lin, Sean
Seitz, Susanne
Tokarz, Janina
Artati, Anna
Adamsky, Jerzy
Plettenburg, Oliver
Lutter, Dominik
Irmler, Martin
Beckers, Johannes
Reichert, Maximilian
Hadian, Kamyar
Zeigerer, Anja
Herzig, Stephan
Berriel Diaz, Mauricio
Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title_full Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title_fullStr Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title_full_unstemmed Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title_short Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
title_sort combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8033521/
https://www.ncbi.nlm.nih.gov/pubmed/33665961
http://dx.doi.org/10.15252/emmm.202012461
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