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ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling

Early T-cell precursor leukaemia (ETP-ALL) is a high-risk subtype of human leukaemia that is poorly understood at the molecular level. Here we report translocations targeting the zinc finger E-box-binding transcription factor ZEB2 as a recurrent genetic lesion in immature/ETP-ALL. Using a conditiona...

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Autores principales: Goossens, Steven, Radaelli, Enrico, Blanchet, Odile, Durinck, Kaat, Van der Meulen, Joni, Peirs, Sofie, Taghon, Tom, Tremblay, Cedric S., Costa, Magdaline, Ghahremani, Morvarid Farhang, De Medts, Jelle, Bartunkova, Sonia, Haigh, Katharina, Schwab, Claire, Farla, Natalie, Pieters, Tim, Matthijssens, Filip, Van Roy, Nadine, Best, J. Adam, Deswarte, Kim, Bogaert, Pieter, Carmichael, Catherine, Rickard, Adam, Suryani, Santi, Bracken, Lauryn S., Alserihi, Raed, Canté-Barrett, Kirsten, Haenebalcke, Lieven, Clappier, Emmanuelle, Rondou, Pieter, Slowicka, Karolina, Huylebroeck, Danny, Goldrath, Ananda W., Janzen, Viktor, McCormack, Matthew P., Lock, Richard B., Curtis, David J., Harrison, Christine, Berx, Geert, Speleman, Frank, Meijerink, Jules P. P., Soulier, Jean, Van Vlierberghe, Pieter, Haigh, Jody J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4354161/
https://www.ncbi.nlm.nih.gov/pubmed/25565005
http://dx.doi.org/10.1038/ncomms6794
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author Goossens, Steven
Radaelli, Enrico
Blanchet, Odile
Durinck, Kaat
Van der Meulen, Joni
Peirs, Sofie
Taghon, Tom
Tremblay, Cedric S.
Costa, Magdaline
Ghahremani, Morvarid Farhang
De Medts, Jelle
Bartunkova, Sonia
Haigh, Katharina
Schwab, Claire
Farla, Natalie
Pieters, Tim
Matthijssens, Filip
Van Roy, Nadine
Best, J. Adam
Deswarte, Kim
Bogaert, Pieter
Carmichael, Catherine
Rickard, Adam
Suryani, Santi
Bracken, Lauryn S.
Alserihi, Raed
Canté-Barrett, Kirsten
Haenebalcke, Lieven
Clappier, Emmanuelle
Rondou, Pieter
Slowicka, Karolina
Huylebroeck, Danny
Goldrath, Ananda W.
Janzen, Viktor
McCormack, Matthew P.
Lock, Richard B.
Curtis, David J.
Harrison, Christine
Berx, Geert
Speleman, Frank
Meijerink, Jules P. P.
Soulier, Jean
Van Vlierberghe, Pieter
Haigh, Jody J.
author_facet Goossens, Steven
Radaelli, Enrico
Blanchet, Odile
Durinck, Kaat
Van der Meulen, Joni
Peirs, Sofie
Taghon, Tom
Tremblay, Cedric S.
Costa, Magdaline
Ghahremani, Morvarid Farhang
De Medts, Jelle
Bartunkova, Sonia
Haigh, Katharina
Schwab, Claire
Farla, Natalie
Pieters, Tim
Matthijssens, Filip
Van Roy, Nadine
Best, J. Adam
Deswarte, Kim
Bogaert, Pieter
Carmichael, Catherine
Rickard, Adam
Suryani, Santi
Bracken, Lauryn S.
Alserihi, Raed
Canté-Barrett, Kirsten
Haenebalcke, Lieven
Clappier, Emmanuelle
Rondou, Pieter
Slowicka, Karolina
Huylebroeck, Danny
Goldrath, Ananda W.
Janzen, Viktor
McCormack, Matthew P.
Lock, Richard B.
Curtis, David J.
Harrison, Christine
Berx, Geert
Speleman, Frank
Meijerink, Jules P. P.
Soulier, Jean
Van Vlierberghe, Pieter
Haigh, Jody J.
author_sort Goossens, Steven
collection PubMed
description Early T-cell precursor leukaemia (ETP-ALL) is a high-risk subtype of human leukaemia that is poorly understood at the molecular level. Here we report translocations targeting the zinc finger E-box-binding transcription factor ZEB2 as a recurrent genetic lesion in immature/ETP-ALL. Using a conditional gain-of-function mouse model, we demonstrate that sustained Zeb2 expression initiates T-cell leukaemia. Moreover, Zeb2-driven mouse leukaemia exhibit some features of the human immature/ETP-ALL gene expression signature, as well as an enhanced leukaemia-initiation potential and activated Janus kinase (JAK)/signal transducers and activators of transcription (STAT) signalling through transcriptional activation of IL7R. This study reveals ZEB2 as an oncogene in the biology of immature/ETP-ALL and paves the way towards pre-clinical studies of novel compounds for the treatment of this aggressive subtype of human T-ALL using our Zeb2-driven mouse model.
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spelling pubmed-43541612015-03-20 ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling Goossens, Steven Radaelli, Enrico Blanchet, Odile Durinck, Kaat Van der Meulen, Joni Peirs, Sofie Taghon, Tom Tremblay, Cedric S. Costa, Magdaline Ghahremani, Morvarid Farhang De Medts, Jelle Bartunkova, Sonia Haigh, Katharina Schwab, Claire Farla, Natalie Pieters, Tim Matthijssens, Filip Van Roy, Nadine Best, J. Adam Deswarte, Kim Bogaert, Pieter Carmichael, Catherine Rickard, Adam Suryani, Santi Bracken, Lauryn S. Alserihi, Raed Canté-Barrett, Kirsten Haenebalcke, Lieven Clappier, Emmanuelle Rondou, Pieter Slowicka, Karolina Huylebroeck, Danny Goldrath, Ananda W. Janzen, Viktor McCormack, Matthew P. Lock, Richard B. Curtis, David J. Harrison, Christine Berx, Geert Speleman, Frank Meijerink, Jules P. P. Soulier, Jean Van Vlierberghe, Pieter Haigh, Jody J. Nat Commun Article Early T-cell precursor leukaemia (ETP-ALL) is a high-risk subtype of human leukaemia that is poorly understood at the molecular level. Here we report translocations targeting the zinc finger E-box-binding transcription factor ZEB2 as a recurrent genetic lesion in immature/ETP-ALL. Using a conditional gain-of-function mouse model, we demonstrate that sustained Zeb2 expression initiates T-cell leukaemia. Moreover, Zeb2-driven mouse leukaemia exhibit some features of the human immature/ETP-ALL gene expression signature, as well as an enhanced leukaemia-initiation potential and activated Janus kinase (JAK)/signal transducers and activators of transcription (STAT) signalling through transcriptional activation of IL7R. This study reveals ZEB2 as an oncogene in the biology of immature/ETP-ALL and paves the way towards pre-clinical studies of novel compounds for the treatment of this aggressive subtype of human T-ALL using our Zeb2-driven mouse model. Nature Publishing Group 2015-01-07 /pmc/articles/PMC4354161/ /pubmed/25565005 http://dx.doi.org/10.1038/ncomms6794 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Article
Goossens, Steven
Radaelli, Enrico
Blanchet, Odile
Durinck, Kaat
Van der Meulen, Joni
Peirs, Sofie
Taghon, Tom
Tremblay, Cedric S.
Costa, Magdaline
Ghahremani, Morvarid Farhang
De Medts, Jelle
Bartunkova, Sonia
Haigh, Katharina
Schwab, Claire
Farla, Natalie
Pieters, Tim
Matthijssens, Filip
Van Roy, Nadine
Best, J. Adam
Deswarte, Kim
Bogaert, Pieter
Carmichael, Catherine
Rickard, Adam
Suryani, Santi
Bracken, Lauryn S.
Alserihi, Raed
Canté-Barrett, Kirsten
Haenebalcke, Lieven
Clappier, Emmanuelle
Rondou, Pieter
Slowicka, Karolina
Huylebroeck, Danny
Goldrath, Ananda W.
Janzen, Viktor
McCormack, Matthew P.
Lock, Richard B.
Curtis, David J.
Harrison, Christine
Berx, Geert
Speleman, Frank
Meijerink, Jules P. P.
Soulier, Jean
Van Vlierberghe, Pieter
Haigh, Jody J.
ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title_full ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title_fullStr ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title_full_unstemmed ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title_short ZEB2 drives immature T-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and IL-7 receptor signalling
title_sort zeb2 drives immature t-cell lymphoblastic leukaemia development via enhanced tumour-initiating potential and il-7 receptor signalling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4354161/
https://www.ncbi.nlm.nih.gov/pubmed/25565005
http://dx.doi.org/10.1038/ncomms6794
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