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A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation

Breakpoint Cluster Region-Abelson kinase (BCR–Abl) is a driver oncogene that causes chronic myeloid leukemia and a subset of acute lymphoid leukemias. Although tyrosine kinase inhibitors provide an effective treatment for these diseases, they generally do not kill leukemic stem cells (LSCs), the can...

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Autores principales: Tadele, Dagim Shiferaw, Robertson, Joseph, Crispin, Richard, Herrera, Maria C., Chlubnová, Markéta, Piechaczyk, Laure, Ayuda-Durán, Pilar, Singh, Sachin Kumar, Gedde-Dahl, Tobias, Fløisand, Yngvar, Skavland, Jørn, Wesche, Jørgen, Gjertsen, Bjørn-Tore, Enserink, Jorrit M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948465/
https://www.ncbi.nlm.nih.gov/pubmed/33303632
http://dx.doi.org/10.1074/jbc.RA120.015285
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author Tadele, Dagim Shiferaw
Robertson, Joseph
Crispin, Richard
Herrera, Maria C.
Chlubnová, Markéta
Piechaczyk, Laure
Ayuda-Durán, Pilar
Singh, Sachin Kumar
Gedde-Dahl, Tobias
Fløisand, Yngvar
Skavland, Jørn
Wesche, Jørgen
Gjertsen, Bjørn-Tore
Enserink, Jorrit M.
author_facet Tadele, Dagim Shiferaw
Robertson, Joseph
Crispin, Richard
Herrera, Maria C.
Chlubnová, Markéta
Piechaczyk, Laure
Ayuda-Durán, Pilar
Singh, Sachin Kumar
Gedde-Dahl, Tobias
Fløisand, Yngvar
Skavland, Jørn
Wesche, Jørgen
Gjertsen, Bjørn-Tore
Enserink, Jorrit M.
author_sort Tadele, Dagim Shiferaw
collection PubMed
description Breakpoint Cluster Region-Abelson kinase (BCR–Abl) is a driver oncogene that causes chronic myeloid leukemia and a subset of acute lymphoid leukemias. Although tyrosine kinase inhibitors provide an effective treatment for these diseases, they generally do not kill leukemic stem cells (LSCs), the cancer-initiating cells that compete with normal hematopoietic stem cells for the bone marrow niche. New strategies to target cancers driven by BCR–Abl are therefore urgently needed. We performed a small molecule screen based on competition between isogenic untransformed cells and BCR–Abl-transformed cells and identified several compounds that selectively impair the fitness of BCR–Abl-transformed cells. Interestingly, systems-level analysis of one of these novel compounds, DJ34, revealed that it induced depletion of c-Myc and activation of p53. DJ34-mediated c-Myc depletion occurred in a wide range of tumor cell types, including lymphoma, lung, glioblastoma, breast cancer, and several forms of leukemia, with primary LSCs being particularly sensitive to DJ34. Further analyses revealed that DJ34 interferes with c-Myc synthesis at the level of transcription, and we provide data showing that DJ34 is a DNA intercalator and topoisomerase II inhibitor. Physiologically, DJ34 induced apoptosis, cell cycle arrest, and cell differentiation. Taken together, we have identified a novel compound that dually targets c-Myc and p53 in a wide variety of cancers, and with particularly strong activity against LSCs.
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spelling pubmed-79484652021-03-19 A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation Tadele, Dagim Shiferaw Robertson, Joseph Crispin, Richard Herrera, Maria C. Chlubnová, Markéta Piechaczyk, Laure Ayuda-Durán, Pilar Singh, Sachin Kumar Gedde-Dahl, Tobias Fløisand, Yngvar Skavland, Jørn Wesche, Jørgen Gjertsen, Bjørn-Tore Enserink, Jorrit M. J Biol Chem Research Article Breakpoint Cluster Region-Abelson kinase (BCR–Abl) is a driver oncogene that causes chronic myeloid leukemia and a subset of acute lymphoid leukemias. Although tyrosine kinase inhibitors provide an effective treatment for these diseases, they generally do not kill leukemic stem cells (LSCs), the cancer-initiating cells that compete with normal hematopoietic stem cells for the bone marrow niche. New strategies to target cancers driven by BCR–Abl are therefore urgently needed. We performed a small molecule screen based on competition between isogenic untransformed cells and BCR–Abl-transformed cells and identified several compounds that selectively impair the fitness of BCR–Abl-transformed cells. Interestingly, systems-level analysis of one of these novel compounds, DJ34, revealed that it induced depletion of c-Myc and activation of p53. DJ34-mediated c-Myc depletion occurred in a wide range of tumor cell types, including lymphoma, lung, glioblastoma, breast cancer, and several forms of leukemia, with primary LSCs being particularly sensitive to DJ34. Further analyses revealed that DJ34 interferes with c-Myc synthesis at the level of transcription, and we provide data showing that DJ34 is a DNA intercalator and topoisomerase II inhibitor. Physiologically, DJ34 induced apoptosis, cell cycle arrest, and cell differentiation. Taken together, we have identified a novel compound that dually targets c-Myc and p53 in a wide variety of cancers, and with particularly strong activity against LSCs. American Society for Biochemistry and Molecular Biology 2020-12-17 /pmc/articles/PMC7948465/ /pubmed/33303632 http://dx.doi.org/10.1074/jbc.RA120.015285 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Tadele, Dagim Shiferaw
Robertson, Joseph
Crispin, Richard
Herrera, Maria C.
Chlubnová, Markéta
Piechaczyk, Laure
Ayuda-Durán, Pilar
Singh, Sachin Kumar
Gedde-Dahl, Tobias
Fløisand, Yngvar
Skavland, Jørn
Wesche, Jørgen
Gjertsen, Bjørn-Tore
Enserink, Jorrit M.
A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title_full A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title_fullStr A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title_full_unstemmed A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title_short A cell competition–based small molecule screen identifies a novel compound that induces dual c-Myc depletion and p53 activation
title_sort cell competition–based small molecule screen identifies a novel compound that induces dual c-myc depletion and p53 activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948465/
https://www.ncbi.nlm.nih.gov/pubmed/33303632
http://dx.doi.org/10.1074/jbc.RA120.015285
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