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Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model

The t(8;21) chromosomal translocation activates aberrant expression of the AML1-ETO (AE) fusion protein and is commonly associated with core binding factor acute myeloid leukaemia (CBF AML). Combining a conditional mouse model that closely resembles the slow evolution and the mosaic AE expression pa...

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Autores principales: Cabezas-Wallscheid, Nina, Eichwald, Victoria, de Graaf, Jos, Löwer, Martin, Lehr, Hans-Anton, Kreft, Andreas, Eshkind, Leonid, Hildebrandt, Andreas, Abassi, Yasmin, Heck, Rosario, Dehof, Anna Katharina, Ohngemach, Svetlana, Sprengel, Rolf, Wörtge, Simone, Schmitt, Steffen, Lotz, Johannes, Meyer, Claudius, Kindler, Thomas, Zhang, Dong-Er, Kaina, Bernd, Castle, John C, Trumpp, Andreas, Sahin, Ugur, Bockamp, Ernesto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3914523/
https://www.ncbi.nlm.nih.gov/pubmed/24124051
http://dx.doi.org/10.1002/emmm.201302661
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author Cabezas-Wallscheid, Nina
Eichwald, Victoria
de Graaf, Jos
Löwer, Martin
Lehr, Hans-Anton
Kreft, Andreas
Eshkind, Leonid
Hildebrandt, Andreas
Abassi, Yasmin
Heck, Rosario
Dehof, Anna Katharina
Ohngemach, Svetlana
Sprengel, Rolf
Wörtge, Simone
Schmitt, Steffen
Lotz, Johannes
Meyer, Claudius
Kindler, Thomas
Zhang, Dong-Er
Kaina, Bernd
Castle, John C
Trumpp, Andreas
Sahin, Ugur
Bockamp, Ernesto
author_facet Cabezas-Wallscheid, Nina
Eichwald, Victoria
de Graaf, Jos
Löwer, Martin
Lehr, Hans-Anton
Kreft, Andreas
Eshkind, Leonid
Hildebrandt, Andreas
Abassi, Yasmin
Heck, Rosario
Dehof, Anna Katharina
Ohngemach, Svetlana
Sprengel, Rolf
Wörtge, Simone
Schmitt, Steffen
Lotz, Johannes
Meyer, Claudius
Kindler, Thomas
Zhang, Dong-Er
Kaina, Bernd
Castle, John C
Trumpp, Andreas
Sahin, Ugur
Bockamp, Ernesto
author_sort Cabezas-Wallscheid, Nina
collection PubMed
description The t(8;21) chromosomal translocation activates aberrant expression of the AML1-ETO (AE) fusion protein and is commonly associated with core binding factor acute myeloid leukaemia (CBF AML). Combining a conditional mouse model that closely resembles the slow evolution and the mosaic AE expression pattern of human t(8;21) CBF AML with global transcriptome sequencing, we find that disease progression was characterized by two principal pathogenic mechanisms. Initially, AE expression modified the lineage potential of haematopoietic stem cells (HSCs), resulting in the selective expansion of the myeloid compartment at the expense of normal erythro- and lymphopoiesis. This lineage skewing was followed by a second substantial rewiring of transcriptional networks occurring in the trajectory to manifest leukaemia. We also find that both HSC and lineage-restricted granulocyte macrophage progenitors (GMPs) acquired leukaemic stem cell (LSC) potential being capable of initiating and maintaining the disease. Finally, our data demonstrate that long-term expression of AE induces an indolent myeloproliferative disease (MPD)-like myeloid leukaemia phenotype with complete penetrance and that acute inactivation of AE function is a potential novel therapeutic option.
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spelling pubmed-39145232014-02-10 Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model Cabezas-Wallscheid, Nina Eichwald, Victoria de Graaf, Jos Löwer, Martin Lehr, Hans-Anton Kreft, Andreas Eshkind, Leonid Hildebrandt, Andreas Abassi, Yasmin Heck, Rosario Dehof, Anna Katharina Ohngemach, Svetlana Sprengel, Rolf Wörtge, Simone Schmitt, Steffen Lotz, Johannes Meyer, Claudius Kindler, Thomas Zhang, Dong-Er Kaina, Bernd Castle, John C Trumpp, Andreas Sahin, Ugur Bockamp, Ernesto EMBO Mol Med Research Articles The t(8;21) chromosomal translocation activates aberrant expression of the AML1-ETO (AE) fusion protein and is commonly associated with core binding factor acute myeloid leukaemia (CBF AML). Combining a conditional mouse model that closely resembles the slow evolution and the mosaic AE expression pattern of human t(8;21) CBF AML with global transcriptome sequencing, we find that disease progression was characterized by two principal pathogenic mechanisms. Initially, AE expression modified the lineage potential of haematopoietic stem cells (HSCs), resulting in the selective expansion of the myeloid compartment at the expense of normal erythro- and lymphopoiesis. This lineage skewing was followed by a second substantial rewiring of transcriptional networks occurring in the trajectory to manifest leukaemia. We also find that both HSC and lineage-restricted granulocyte macrophage progenitors (GMPs) acquired leukaemic stem cell (LSC) potential being capable of initiating and maintaining the disease. Finally, our data demonstrate that long-term expression of AE induces an indolent myeloproliferative disease (MPD)-like myeloid leukaemia phenotype with complete penetrance and that acute inactivation of AE function is a potential novel therapeutic option. John Wiley and Sons 2013-12 2013-10-04 /pmc/articles/PMC3914523/ /pubmed/24124051 http://dx.doi.org/10.1002/emmm.201302661 Text en © 2013 The Authors. Published by John Wiley and Sons, Ltd on behalf of EMBO http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Cabezas-Wallscheid, Nina
Eichwald, Victoria
de Graaf, Jos
Löwer, Martin
Lehr, Hans-Anton
Kreft, Andreas
Eshkind, Leonid
Hildebrandt, Andreas
Abassi, Yasmin
Heck, Rosario
Dehof, Anna Katharina
Ohngemach, Svetlana
Sprengel, Rolf
Wörtge, Simone
Schmitt, Steffen
Lotz, Johannes
Meyer, Claudius
Kindler, Thomas
Zhang, Dong-Er
Kaina, Bernd
Castle, John C
Trumpp, Andreas
Sahin, Ugur
Bockamp, Ernesto
Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title_full Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title_fullStr Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title_full_unstemmed Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title_short Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model
title_sort instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an aml1-eto mouse model
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3914523/
https://www.ncbi.nlm.nih.gov/pubmed/24124051
http://dx.doi.org/10.1002/emmm.201302661
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