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1. Interplay between the EMT transcription factors ZEB1 and ZEB2 regulates hematopoietic stem and progenitor cell differentiation and hematopoietic lineage fidelity.

2. ZEB2 and LMO2 drive immature T-cell lymphoblastic leukemia via distinct oncogenic mechanisms

3. The ROSA26-iPSC Mouse: A Conditional, Inducible, and Exchangeable Resource for Studying Cellular (De)Differentiation

4. JAK/BCL2 inhibition acts synergistically with LSD1 inhibitors to selectively target ETP-ALL

5. Monitoring AKT activity and targeting in live tissue and disease contexts using a real-time Akt-FRET biosensor mouse

6. STAT5 activation promotes progression and chemotherapy-resistance in early T-cell precursor acute lymphoblastic leukemia

7. Autophagy inhibition by TSSC4 (tumor suppressing subtransferable candidate 4) contributes to sustainable cancer cell growth

8. Dysregulation of Grainyhead-like 3 expression causes widespread developmental defects

9. Interplay between the EMT transcription factors ZEB1 and ZEB2 regulates hematopoietic stem and progenitor cell differentiation and hematopoietic lineage fidelity

10. The EMT modulator SNAI1 contributes to AML pathogenesis via its interaction with LSD1

11. AIF-regulated oxidative phosphorylation supports lung cancer development

12. Loss of autocrine endothelial-derived VEGF significantly reduces hemangiosarcoma development in conditional p53-deficient mice

13. 2008 - ALTERED EXPRESSION OF EPITHELIAL TO MESENCHYMAL TRANSITION MODULATORS IN ACUTE MYELOID LEUKAEMIA - A MODEL OF LSD1 CORRUPTION

14. Gata3 antagonizes cancer progression in Pten-deficient prostates

15. Oncogenic ZEB2 activation drives sensitivity toward KDM1A inhibition in T-cell acute lymphoblastic leukemia

16. The EMT regulator Zeb2/Sip1 is essential for murine embryonic hematopoietic stem/progenitor cell differentiation and mobilization

17. Identification of a co-activator that links growth factor signalling to c-Jun/AP-1 activation

18. The pulmonary microvasculature entraps induced vascular progenitor cells (iVPCs) systemically delivered after cardiac ischemia-reperfusion injury: Indication for preservation of heart function via paracrine effects beyond engraftment

19. Increased skeletal VEGF enhances β-catenin activity and results in excessively ossified bones

20. Snai1 regulates cell lineage allocation and stem cell maintenance in the mouse intestinal epithelium

21. Activated Fps/Fes partially rescues the in vivo developmental potential of Flk1-deficient vascular progenitor cells

22. ZEB2-transgene expression in the epidermis compromises the integrity of the epidermal barrier through the repression of different tight junction proteins

23. p53 promotes VEGF expression and angiogenesis in the absence of an intact p21-Rb pathway

24. Efficient ROSA26-based conditional and/or inducible transgenesis using RMCE-compatible F1 hybrid mouse embryonic stem cells

25. Endothelial VEGF sculpts cortical cytoarchitecture

26. The EMT Modulator SNAI1 Drives AML Development Via Its Interaction with the Chromatin Modulator LSD1

27. Vegf regulates embryonic erythroid development through Gata1 modulation

28. Widespread Overexpression of Epitope-Tagged Mdm4 Does Not Accelerate Tumor Formation In Vivo▿

29. VEGFR2 (KDR/Flk1) signaling mediates axon growth in response to semaphorin 3E in the developing brain

30. Efficient mouse transgenesis using Gateway-compatible ROSA26 locus targeting vectors and F1 hybrid ES cells

31. HIF-1a and VEGF promote chondrocyte survival via complementary mechanisms regulating the oxygen level in the avascular developing growth cartilage

32. Over-expression of Specific VEGF Isoforms Differentially Enhances and Patterns Bone Formation by Modulating Angiogenesis and Osteoblast Precursors

33. Conditional and inducible transgene expression in mice through the combinatorial use of Cre-mediated recombination and tetracycline induction

34. The ROSA26-iPSC Mouse: A Conditional, Inducible, and Exchangeable Resource for Studying Cellular (De)Differentiation

35. Cortical and retinal defects caused by dosage-dependent reductions in VEGF-A paracrine signaling

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