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Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance

SIMPLE SUMMARY: Poor survival and treatment failure of patients with cancer are mainly due to resistance to therapy. Tribbles homologue 2 (TRIB2) has recently been identified as a protein that promotes resistance to several anti-cancer drugs. In this study, RNA sequencing and bioinformatics analysis...

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Autores principales: Machado, Susana, Silva, Andreia, De Sousa-Coelho, Ana Luísa, Duarte, Isabel, Grenho, Inês, Santos, Bruno, Mayoral-Varo, Victor, Megias, Diego, Sánchez-Cabo, Fátima, Dopazo, Ana, Ferreira, Bibiana I., Link, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763856/
https://www.ncbi.nlm.nih.gov/pubmed/33316942
http://dx.doi.org/10.3390/cancers12123689
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author Machado, Susana
Silva, Andreia
De Sousa-Coelho, Ana Luísa
Duarte, Isabel
Grenho, Inês
Santos, Bruno
Mayoral-Varo, Victor
Megias, Diego
Sánchez-Cabo, Fátima
Dopazo, Ana
Ferreira, Bibiana I.
Link, Wolfgang
author_facet Machado, Susana
Silva, Andreia
De Sousa-Coelho, Ana Luísa
Duarte, Isabel
Grenho, Inês
Santos, Bruno
Mayoral-Varo, Victor
Megias, Diego
Sánchez-Cabo, Fátima
Dopazo, Ana
Ferreira, Bibiana I.
Link, Wolfgang
author_sort Machado, Susana
collection PubMed
description SIMPLE SUMMARY: Poor survival and treatment failure of patients with cancer are mainly due to resistance to therapy. Tribbles homologue 2 (TRIB2) has recently been identified as a protein that promotes resistance to several anti-cancer drugs. In this study, RNA sequencing and bioinformatics analysis were used with the aim of characterizing the impact of TRIB2 on the expression of genes and developing pharmacological strategies to revert these TRIB2-mediated changes, thereby overcoming therapy resistance. We show that two naturally occurring alkaloids, harmine and piperlongumine, inverse the gene expression profile produced by TRIB2 and sensitize cancer cells to anti-cancer drugs. Our data suggest that harmine and piperlongumine or similar compounds might have the potential to overcome TRIB2-mediated therapy resistance in cancer patients. ABSTRACT: Therapy resistance is responsible for most relapses in patients with cancer and is the major challenge to improving the clinical outcome. The pseudokinase Tribbles homologue 2 (TRIB2) has been characterized as an important driver of resistance to several anti-cancer drugs, including the dual ATP-competitive PI3K and mTOR inhibitor dactolisib (BEZ235). TRIB2 promotes AKT activity, leading to the inactivation of FOXO transcription factors, which are known to mediate the cell response to antitumor drugs. To characterize the downstream events of TRIB2 activity, we analyzed the gene expression profiles of isogenic cell lines with different TRIB2 statuses by RNA sequencing. Using a connectivity map-based computational approach, we identified drug-induced gene-expression profiles that invert the TRIB2-associated expression profile. In particular, the natural alkaloids harmine and piperlongumine not only produced inverse gene expression profiles but also synergistically increased BEZ235-induced cell toxicity. Importantly, both agents promote FOXO nuclear translocation without interfering with the nuclear export machinery and induce the transcription of FOXO target genes. Our results highlight the great potential of this approach for drug repurposing and suggest that harmine and piperlongumine or similar compounds might be useful in the clinic to overcome TRIB2-mediated therapy resistance in cancer patients.
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spelling pubmed-77638562020-12-27 Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance Machado, Susana Silva, Andreia De Sousa-Coelho, Ana Luísa Duarte, Isabel Grenho, Inês Santos, Bruno Mayoral-Varo, Victor Megias, Diego Sánchez-Cabo, Fátima Dopazo, Ana Ferreira, Bibiana I. Link, Wolfgang Cancers (Basel) Article SIMPLE SUMMARY: Poor survival and treatment failure of patients with cancer are mainly due to resistance to therapy. Tribbles homologue 2 (TRIB2) has recently been identified as a protein that promotes resistance to several anti-cancer drugs. In this study, RNA sequencing and bioinformatics analysis were used with the aim of characterizing the impact of TRIB2 on the expression of genes and developing pharmacological strategies to revert these TRIB2-mediated changes, thereby overcoming therapy resistance. We show that two naturally occurring alkaloids, harmine and piperlongumine, inverse the gene expression profile produced by TRIB2 and sensitize cancer cells to anti-cancer drugs. Our data suggest that harmine and piperlongumine or similar compounds might have the potential to overcome TRIB2-mediated therapy resistance in cancer patients. ABSTRACT: Therapy resistance is responsible for most relapses in patients with cancer and is the major challenge to improving the clinical outcome. The pseudokinase Tribbles homologue 2 (TRIB2) has been characterized as an important driver of resistance to several anti-cancer drugs, including the dual ATP-competitive PI3K and mTOR inhibitor dactolisib (BEZ235). TRIB2 promotes AKT activity, leading to the inactivation of FOXO transcription factors, which are known to mediate the cell response to antitumor drugs. To characterize the downstream events of TRIB2 activity, we analyzed the gene expression profiles of isogenic cell lines with different TRIB2 statuses by RNA sequencing. Using a connectivity map-based computational approach, we identified drug-induced gene-expression profiles that invert the TRIB2-associated expression profile. In particular, the natural alkaloids harmine and piperlongumine not only produced inverse gene expression profiles but also synergistically increased BEZ235-induced cell toxicity. Importantly, both agents promote FOXO nuclear translocation without interfering with the nuclear export machinery and induce the transcription of FOXO target genes. Our results highlight the great potential of this approach for drug repurposing and suggest that harmine and piperlongumine or similar compounds might be useful in the clinic to overcome TRIB2-mediated therapy resistance in cancer patients. MDPI 2020-12-09 /pmc/articles/PMC7763856/ /pubmed/33316942 http://dx.doi.org/10.3390/cancers12123689 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Machado, Susana
Silva, Andreia
De Sousa-Coelho, Ana Luísa
Duarte, Isabel
Grenho, Inês
Santos, Bruno
Mayoral-Varo, Victor
Megias, Diego
Sánchez-Cabo, Fátima
Dopazo, Ana
Ferreira, Bibiana I.
Link, Wolfgang
Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title_full Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title_fullStr Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title_full_unstemmed Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title_short Harmine and Piperlongumine Revert TRIB2-Mediated Drug Resistance
title_sort harmine and piperlongumine revert trib2-mediated drug resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763856/
https://www.ncbi.nlm.nih.gov/pubmed/33316942
http://dx.doi.org/10.3390/cancers12123689
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