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BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models

BET family proteins are epigenetic regulators known to control expression of genes involved in cell growth and oncogenesis. Selective inhibitors of BET proteins exhibit potent anti-proliferative activity in a number of hematologic cancer models, in part through suppression of the MYC oncogene and do...

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Autores principales: Wyce, Anastasia, Ganji, Gopinath, Smitheman, Kimberly N., Chung, Chun-wa, Korenchuk, Susan, Bai, Yuchen, Barbash, Olena, Le, BaoChau, Craggs, Peter D., McCabe, Michael T., Kennedy-Wilson, Karen M., Sanchez, Lydia V., Gosmini, Romain L., Parr, Nigel, McHugh, Charles F., Dhanak, Dashyant, Prinjha, Rab K., Auger, Kurt R., Tummino, Peter J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751846/
https://www.ncbi.nlm.nih.gov/pubmed/24009722
http://dx.doi.org/10.1371/journal.pone.0072967
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author Wyce, Anastasia
Ganji, Gopinath
Smitheman, Kimberly N.
Chung, Chun-wa
Korenchuk, Susan
Bai, Yuchen
Barbash, Olena
Le, BaoChau
Craggs, Peter D.
McCabe, Michael T.
Kennedy-Wilson, Karen M.
Sanchez, Lydia V.
Gosmini, Romain L.
Parr, Nigel
McHugh, Charles F.
Dhanak, Dashyant
Prinjha, Rab K.
Auger, Kurt R.
Tummino, Peter J.
author_facet Wyce, Anastasia
Ganji, Gopinath
Smitheman, Kimberly N.
Chung, Chun-wa
Korenchuk, Susan
Bai, Yuchen
Barbash, Olena
Le, BaoChau
Craggs, Peter D.
McCabe, Michael T.
Kennedy-Wilson, Karen M.
Sanchez, Lydia V.
Gosmini, Romain L.
Parr, Nigel
McHugh, Charles F.
Dhanak, Dashyant
Prinjha, Rab K.
Auger, Kurt R.
Tummino, Peter J.
author_sort Wyce, Anastasia
collection PubMed
description BET family proteins are epigenetic regulators known to control expression of genes involved in cell growth and oncogenesis. Selective inhibitors of BET proteins exhibit potent anti-proliferative activity in a number of hematologic cancer models, in part through suppression of the MYC oncogene and downstream Myc-driven pathways. However, little is currently known about the activity of BET inhibitors in solid tumor models, and whether down-regulation of MYC family genes contributes to sensitivity. Here we provide evidence for potent BET inhibitor activity in neuroblastoma, a pediatric solid tumor associated with a high frequency of MYCN amplifications. We treated a panel of neuroblastoma cell lines with a novel small molecule inhibitor of BET proteins, GSK1324726A (I-BET726), and observed potent growth inhibition and cytotoxicity in most cell lines irrespective of MYCN copy number or expression level. Gene expression analyses in neuroblastoma cell lines suggest a role of BET inhibition in apoptosis, signaling, and N-Myc-driven pathways, including the direct suppression of BCL2 and MYCN. Reversal of MYCN or BCL2 suppression reduces the potency of I-BET726-induced cytotoxicity in a cell line-specific manner; however, neither factor fully accounts for I-BET726 sensitivity. Oral administration of I-BET726 to mouse xenograft models of human neuroblastoma results in tumor growth inhibition and down-regulation MYCN and BCL2 expression, suggesting a potential role for these genes in tumor growth. Taken together, our data highlight the potential of BET inhibitors as novel therapeutics for neuroblastoma, and suggest that sensitivity is driven by pleiotropic effects on cell growth and apoptotic pathways in a context-specific manner.
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spelling pubmed-37518462013-09-05 BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models Wyce, Anastasia Ganji, Gopinath Smitheman, Kimberly N. Chung, Chun-wa Korenchuk, Susan Bai, Yuchen Barbash, Olena Le, BaoChau Craggs, Peter D. McCabe, Michael T. Kennedy-Wilson, Karen M. Sanchez, Lydia V. Gosmini, Romain L. Parr, Nigel McHugh, Charles F. Dhanak, Dashyant Prinjha, Rab K. Auger, Kurt R. Tummino, Peter J. PLoS One Research Article BET family proteins are epigenetic regulators known to control expression of genes involved in cell growth and oncogenesis. Selective inhibitors of BET proteins exhibit potent anti-proliferative activity in a number of hematologic cancer models, in part through suppression of the MYC oncogene and downstream Myc-driven pathways. However, little is currently known about the activity of BET inhibitors in solid tumor models, and whether down-regulation of MYC family genes contributes to sensitivity. Here we provide evidence for potent BET inhibitor activity in neuroblastoma, a pediatric solid tumor associated with a high frequency of MYCN amplifications. We treated a panel of neuroblastoma cell lines with a novel small molecule inhibitor of BET proteins, GSK1324726A (I-BET726), and observed potent growth inhibition and cytotoxicity in most cell lines irrespective of MYCN copy number or expression level. Gene expression analyses in neuroblastoma cell lines suggest a role of BET inhibition in apoptosis, signaling, and N-Myc-driven pathways, including the direct suppression of BCL2 and MYCN. Reversal of MYCN or BCL2 suppression reduces the potency of I-BET726-induced cytotoxicity in a cell line-specific manner; however, neither factor fully accounts for I-BET726 sensitivity. Oral administration of I-BET726 to mouse xenograft models of human neuroblastoma results in tumor growth inhibition and down-regulation MYCN and BCL2 expression, suggesting a potential role for these genes in tumor growth. Taken together, our data highlight the potential of BET inhibitors as novel therapeutics for neuroblastoma, and suggest that sensitivity is driven by pleiotropic effects on cell growth and apoptotic pathways in a context-specific manner. Public Library of Science 2013-08-23 /pmc/articles/PMC3751846/ /pubmed/24009722 http://dx.doi.org/10.1371/journal.pone.0072967 Text en © 2013 Wyce et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wyce, Anastasia
Ganji, Gopinath
Smitheman, Kimberly N.
Chung, Chun-wa
Korenchuk, Susan
Bai, Yuchen
Barbash, Olena
Le, BaoChau
Craggs, Peter D.
McCabe, Michael T.
Kennedy-Wilson, Karen M.
Sanchez, Lydia V.
Gosmini, Romain L.
Parr, Nigel
McHugh, Charles F.
Dhanak, Dashyant
Prinjha, Rab K.
Auger, Kurt R.
Tummino, Peter J.
BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title_full BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title_fullStr BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title_full_unstemmed BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title_short BET Inhibition Silences Expression of MYCN and BCL2 and Induces Cytotoxicity in Neuroblastoma Tumor Models
title_sort bet inhibition silences expression of mycn and bcl2 and induces cytotoxicity in neuroblastoma tumor models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751846/
https://www.ncbi.nlm.nih.gov/pubmed/24009722
http://dx.doi.org/10.1371/journal.pone.0072967
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