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NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer

Evasion from drug-induced apoptosis is a crucial mechanism of cancer treatment resistance. The proapoptotic protein NOXA marks an aggressive pancreatic ductal adenocarcinoma (PDAC) subtype. To identify drugs that unleash the death-inducing potential of NOXA, we performed an unbiased drug screening e...

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Autores principales: Doffo, Josefina, Bamopoulos, Stefanos A., Köse, Hazal, Orben, Felix, Zang, Chuanbing, Pons, Miriam, den Dekker, Alexander T., Brouwer, Rutger W. W., Baluapuri, Apoorva, Habringer, Stefan, Reichert, Maximillian, Illendula, Anuradha, Krämer, Oliver H., Schick, Markus, Wolf, Elmar, van IJcken, Wilfred F. J., Esposito, Irene, Keller, Ulrich, Schneider, Günter, Wirth, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892327/
https://www.ncbi.nlm.nih.gov/pubmed/35197278
http://dx.doi.org/10.1073/pnas.2105691119
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author Doffo, Josefina
Bamopoulos, Stefanos A.
Köse, Hazal
Orben, Felix
Zang, Chuanbing
Pons, Miriam
den Dekker, Alexander T.
Brouwer, Rutger W. W.
Baluapuri, Apoorva
Habringer, Stefan
Reichert, Maximillian
Illendula, Anuradha
Krämer, Oliver H.
Schick, Markus
Wolf, Elmar
van IJcken, Wilfred F. J.
Esposito, Irene
Keller, Ulrich
Schneider, Günter
Wirth, Matthias
author_facet Doffo, Josefina
Bamopoulos, Stefanos A.
Köse, Hazal
Orben, Felix
Zang, Chuanbing
Pons, Miriam
den Dekker, Alexander T.
Brouwer, Rutger W. W.
Baluapuri, Apoorva
Habringer, Stefan
Reichert, Maximillian
Illendula, Anuradha
Krämer, Oliver H.
Schick, Markus
Wolf, Elmar
van IJcken, Wilfred F. J.
Esposito, Irene
Keller, Ulrich
Schneider, Günter
Wirth, Matthias
author_sort Doffo, Josefina
collection PubMed
description Evasion from drug-induced apoptosis is a crucial mechanism of cancer treatment resistance. The proapoptotic protein NOXA marks an aggressive pancreatic ductal adenocarcinoma (PDAC) subtype. To identify drugs that unleash the death-inducing potential of NOXA, we performed an unbiased drug screening experiment. In NOXA-deficient isogenic cellular models, we identified an inhibitor of the transcription factor heterodimer CBFβ/RUNX1. By genetic gain and loss of function experiments, we validated that the mode of action depends on RUNX1 and NOXA. Of note is that RUNX1 expression is significantly higher in PDACs compared to normal pancreas. We show that pharmacological RUNX1 inhibition significantly blocks tumor growth in vivo and in primary patient-derived PDAC organoids. Through genome-wide analysis, we detected that RUNX1-loss reshapes the epigenetic landscape, which gains H3K27ac enrichment at the NOXA promoter. Our study demonstrates a previously unknown mechanism of NOXA-dependent cell death, which can be triggered pharmaceutically. Therefore, our data show a way to target a therapy-resistant PDAC, an unmet clinical need.
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spelling pubmed-88923272022-08-23 NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer Doffo, Josefina Bamopoulos, Stefanos A. Köse, Hazal Orben, Felix Zang, Chuanbing Pons, Miriam den Dekker, Alexander T. Brouwer, Rutger W. W. Baluapuri, Apoorva Habringer, Stefan Reichert, Maximillian Illendula, Anuradha Krämer, Oliver H. Schick, Markus Wolf, Elmar van IJcken, Wilfred F. J. Esposito, Irene Keller, Ulrich Schneider, Günter Wirth, Matthias Proc Natl Acad Sci U S A Biological Sciences Evasion from drug-induced apoptosis is a crucial mechanism of cancer treatment resistance. The proapoptotic protein NOXA marks an aggressive pancreatic ductal adenocarcinoma (PDAC) subtype. To identify drugs that unleash the death-inducing potential of NOXA, we performed an unbiased drug screening experiment. In NOXA-deficient isogenic cellular models, we identified an inhibitor of the transcription factor heterodimer CBFβ/RUNX1. By genetic gain and loss of function experiments, we validated that the mode of action depends on RUNX1 and NOXA. Of note is that RUNX1 expression is significantly higher in PDACs compared to normal pancreas. We show that pharmacological RUNX1 inhibition significantly blocks tumor growth in vivo and in primary patient-derived PDAC organoids. Through genome-wide analysis, we detected that RUNX1-loss reshapes the epigenetic landscape, which gains H3K27ac enrichment at the NOXA promoter. Our study demonstrates a previously unknown mechanism of NOXA-dependent cell death, which can be triggered pharmaceutically. Therefore, our data show a way to target a therapy-resistant PDAC, an unmet clinical need. National Academy of Sciences 2022-02-23 2022-03-01 /pmc/articles/PMC8892327/ /pubmed/35197278 http://dx.doi.org/10.1073/pnas.2105691119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Doffo, Josefina
Bamopoulos, Stefanos A.
Köse, Hazal
Orben, Felix
Zang, Chuanbing
Pons, Miriam
den Dekker, Alexander T.
Brouwer, Rutger W. W.
Baluapuri, Apoorva
Habringer, Stefan
Reichert, Maximillian
Illendula, Anuradha
Krämer, Oliver H.
Schick, Markus
Wolf, Elmar
van IJcken, Wilfred F. J.
Esposito, Irene
Keller, Ulrich
Schneider, Günter
Wirth, Matthias
NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title_full NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title_fullStr NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title_full_unstemmed NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title_short NOXA expression drives synthetic lethality to RUNX1 inhibition in pancreatic cancer
title_sort noxa expression drives synthetic lethality to runx1 inhibition in pancreatic cancer
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892327/
https://www.ncbi.nlm.nih.gov/pubmed/35197278
http://dx.doi.org/10.1073/pnas.2105691119
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