| Literature DB >> 24124051 |
Nina Cabezas-Wallscheid1, Victoria Eichwald, Jos de Graaf, Martin Löwer, Hans-Anton Lehr, Andreas Kreft, Leonid Eshkind, Andreas Hildebrandt, Yasmin Abassi, Rosario Heck, Anna Katharina Dehof, Svetlana Ohngemach, Rolf Sprengel, Simone Wörtge, Steffen Schmitt, Johannes Lotz, Claudius Meyer, Thomas Kindler, Dong-Er Zhang, Bernd Kaina, John C Castle, Andreas Trumpp, Ugur Sahin, Ernesto Bockamp.
Abstract
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.Entities:
Keywords: cancer stem cells; core binding factor acute myeloid leukaemia; preclinical mouse model; therapy target validation; whole transcriptome sequencing
Mesh:
Substances:
Year: 2013 PMID: 24124051 PMCID: PMC3914523 DOI: 10.1002/emmm.201302661
Source DB: PubMed Journal: EMBO Mol Med ISSN: 1757-4676 Impact factor: 12.137
Figure 1Conditional AE expression alters normal blood cell development.
Figure 2AE expression specifically increases GMP.* p < 0.05; ** p < 0.01; ns, not significant.
Figure 3Long-term AE expression induces leukaemia. With the exception of Fig 3D data shown was obtained from long-term reconstituted mice without DOX or animals that have been exposed to DOX for 16–18 months. * p < 0.05; ** p < 0.01; ns, not significant.
Figure 4Analysis of HSC and progenitor populations in leukaemic mice. Data shown was obtained from reconstituted mice without DOX or animals that have been exposed to DOX for 16–18 months. 7AAD, 7-amino-actinomycin D; * p < 0.05; ** p < 0.01; ns, not significant.
Figure 5Ablation of AE function in leukaemic mice. Each square and dot represents one mouse. * p < 0.05; ** p < 0.01; *** p < 0.001; ns, not significant.
Figure 6L-HSC and L-GMP acquire leukaemic stem cell potential. ** p < 00.01; *** p < 0.001; ns, not significant. Each square and dot represents one mouse.
Figure 7RNA-Seq whole transcriptome analysis.
Ingenuity pathway analysis (IPA) reveals upregulation of cancer-related cellular networks and downregulation of cell death pathways
| Function | Transcription in L-GMP | Predicted Activation | p-Value | Z-score | Molecules |
|---|---|---|---|---|---|
| Transformation | Specifically increased or newly expressed | Increased | 1.42E-07 | 5.219 | 138 |
| Specifically decreased or shut-down | Increased | 2.59E-03 | 5.030 | 115 | |
| Survival | Specifically increased or newly expressed | Increased | 5.45E-05 | 10.778 | 305 |
| Specifically decreased or shut-down | Increased | 7.17E-09 | 10.760 | 327 | |
| Proliferation | Specifically increased or newly expressed | Increased | 4.01E-11 | 9.965 | 860 |
| Specifically decreased or shut-down | Increased | 3.54E-09 | 6.445 | 834 | |
| Expression of RNA | Specifically increased or newly expressed | Increased | 1.26E-09 | 2.976 | 546 |
| Specifically decreased or shut-down | Increased | 1.74E-03 | 4.431 | 485 | |
| Cytoplasmatic Organization | Specifically increased or newly expressed | Increased | 8.87E-07 | 5.747 | 331 |
| Specifically decreased or shut-down | Increased | 6.21E-06 | 6.207 | 321 | |
| Cell Death | Specifically increased or newly expressed | Decreased | 1.72E-08 | −2.395 | 777 |
| Specifically decreased or shut-down | no prediction | 4.50E-12 | −1.031 | 794 |
Analysis of L-GMP-specific gene expression showed a significant increase of pathways associated with transformation, survival, proliferation, RNA expression and cytoplasmatic organization and a downregulation of pathways associated to cell death. Gene function, transcriptional modulation in L-GMP as compared to Ctrl-GMP, the IPA predicted functional activation status, p-values, Z-scores and the number of mapped individual molecules are indicated.
Figure 8Gene set enrichment analysis (GSEA) and identification of L-GMP-specific transcripts.