Cargando…

BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells

In the present work we aimed to identify targetable signaling networks in human MLL-AF9 leukemias. We show that MLL-AF9 cells critically depend on FLT3-ligand induced pathways as well as on BRD3/4 for their survival. We evaluated the in vitro and in vivo efficacy of the BRD3/4 inhibitor I-BET151 in...

Descripción completa

Detalles Bibliográficos
Autores principales: Carretta, Marco, Brouwers-Vos, Annet Z., Bosman, Matthieu, Horton, Sarah J., Martens, Joost H. A., Vellenga, Edo, Schuringa, Jan Jacob
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5730124/
https://www.ncbi.nlm.nih.gov/pubmed/29240787
http://dx.doi.org/10.1371/journal.pone.0189102
_version_ 1783286299856207872
author Carretta, Marco
Brouwers-Vos, Annet Z.
Bosman, Matthieu
Horton, Sarah J.
Martens, Joost H. A.
Vellenga, Edo
Schuringa, Jan Jacob
author_facet Carretta, Marco
Brouwers-Vos, Annet Z.
Bosman, Matthieu
Horton, Sarah J.
Martens, Joost H. A.
Vellenga, Edo
Schuringa, Jan Jacob
author_sort Carretta, Marco
collection PubMed
description In the present work we aimed to identify targetable signaling networks in human MLL-AF9 leukemias. We show that MLL-AF9 cells critically depend on FLT3-ligand induced pathways as well as on BRD3/4 for their survival. We evaluated the in vitro and in vivo efficacy of the BRD3/4 inhibitor I-BET151 in various human MLL-AF9 (primary) models and patient samples and analyzed the transcriptome changes following treatment. To further understand the mode of action of BRD3/4 inhibition, we performed ChIP-seq experiments on the MLL-AF9 complex in THP1 cells and compared it to RNA-seq data of I-BET151 treated cells. While we could confirm a consistent and specific downregulation of key-oncogenic drivers such as MYC and BCL2, we found that the majority of I-BET151-responsive genes were not direct MLL-AF9 targets. In fact, MLL-AF9 specific targets such as the HOXA cluster, MEIS1 and other cell cycle regulators such as CDK6 were not affected by I-BET151 treatment. Furthermore, we also highlight how MLL-AF9 transformed cells are dependent on the function of non-mutated hematopoietic transcription factors and tyrosine kinases such as the FLT3-TAK1/NF-kB pathway, again impacting on BCL2 but not on the HOXA cluster. We conclude that BRD3/4 and the FLT3-TAK1/NF-kB pathways collectively control a set of targets that are critically important for the survival of human MLL-AF9 cells.
format Online
Article
Text
id pubmed-5730124
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-57301242017-12-22 BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells Carretta, Marco Brouwers-Vos, Annet Z. Bosman, Matthieu Horton, Sarah J. Martens, Joost H. A. Vellenga, Edo Schuringa, Jan Jacob PLoS One Research Article In the present work we aimed to identify targetable signaling networks in human MLL-AF9 leukemias. We show that MLL-AF9 cells critically depend on FLT3-ligand induced pathways as well as on BRD3/4 for their survival. We evaluated the in vitro and in vivo efficacy of the BRD3/4 inhibitor I-BET151 in various human MLL-AF9 (primary) models and patient samples and analyzed the transcriptome changes following treatment. To further understand the mode of action of BRD3/4 inhibition, we performed ChIP-seq experiments on the MLL-AF9 complex in THP1 cells and compared it to RNA-seq data of I-BET151 treated cells. While we could confirm a consistent and specific downregulation of key-oncogenic drivers such as MYC and BCL2, we found that the majority of I-BET151-responsive genes were not direct MLL-AF9 targets. In fact, MLL-AF9 specific targets such as the HOXA cluster, MEIS1 and other cell cycle regulators such as CDK6 were not affected by I-BET151 treatment. Furthermore, we also highlight how MLL-AF9 transformed cells are dependent on the function of non-mutated hematopoietic transcription factors and tyrosine kinases such as the FLT3-TAK1/NF-kB pathway, again impacting on BCL2 but not on the HOXA cluster. We conclude that BRD3/4 and the FLT3-TAK1/NF-kB pathways collectively control a set of targets that are critically important for the survival of human MLL-AF9 cells. Public Library of Science 2017-12-14 /pmc/articles/PMC5730124/ /pubmed/29240787 http://dx.doi.org/10.1371/journal.pone.0189102 Text en © 2017 Carretta 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Carretta, Marco
Brouwers-Vos, Annet Z.
Bosman, Matthieu
Horton, Sarah J.
Martens, Joost H. A.
Vellenga, Edo
Schuringa, Jan Jacob
BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title_full BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title_fullStr BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title_full_unstemmed BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title_short BRD3/4 inhibition and FLT3-ligand deprivation target pathways that are essential for the survival of human MLL-AF9(+) leukemic cells
title_sort brd3/4 inhibition and flt3-ligand deprivation target pathways that are essential for the survival of human mll-af9(+) leukemic cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5730124/
https://www.ncbi.nlm.nih.gov/pubmed/29240787
http://dx.doi.org/10.1371/journal.pone.0189102
work_keys_str_mv AT carrettamarco brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT brouwersvosannetz brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT bosmanmatthieu brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT hortonsarahj brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT martensjoostha brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT vellengaedo brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells
AT schuringajanjacob brd34inhibitionandflt3liganddeprivationtargetpathwaysthatareessentialforthesurvivalofhumanmllaf9leukemiccells