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1. Murine AGM single-cell profiling identifies a continuum of hemogenic endothelium differentiation marked by ACE.

2. RUNX1 Dosage in Development and Cancer.

3. SOX7 expression is critically required in FLK1-expressing cells for vasculogenesis and angiogenesis during mouse embryonic development.

4. Mouse RUNX1C regulates premegakaryocytic/erythroid output and maintains survival of megakaryocyte progenitors.

5. Identification of novel regulators of developmental hematopoiesis using Endoglin regulatory elements as molecular probes.

6. RUNX1 positively regulates a cell adhesion and migration program in murine hemogenic endothelium prior to blood emergence.

7. Smooth muscle cells largely develop independently of functional hemogenic endothelium.

8. GFI1 and GFI1B control the loss of endothelial identity of hemogenic endothelium during hematopoietic commitment.

9. Identification and characterization of a novel transcriptional target of RUNX1/AML1 at the onset of hematopoietic development.

10. Embryonic stem cell-derived hemangioblasts remain epigenetically plastic and require PRC1 to prevent neural gene expression.

11. Contrasting effects of Sox17- and Sox18-sustained expression at the onset of blood specification.

12. The differential activities of Runx1 promoters define milestones during embryonic hematopoiesis.

13. Sox7-sustained expression alters the balance between proliferation and differentiation of hematopoietic progenitors at the onset of blood specification.

14. Early chromatin unfolding by RUNX1: a molecular explanation for differential requirements during specification versus maintenance of the hematopoietic gene expression program.

15. Expression of the leukemia oncogene Lmo2 is controlled by an array of tissue-specific elements dispersed over 100 kb and bound by Tal1/Lmo2, Ets, and Gata factors.

16. The histone acetyl transferase activity of monocytic leukemia zinc finger is critical for the proliferation of hematopoietic precursors.

17. Endoglin expression in blood and endothelium is differentially regulated by modular assembly of the Ets/Gata hemangioblast code.

18. The paralogous hematopoietic regulators Lyl1 and Scl are coregulated by Ets and GATA factors, but Lyl1 cannot rescue the early Scl-/- phenotype.

19. Haploinsufficiency of Runx1 results in the acceleration of mesodermal development and hemangioblast specification upon in vitro differentiation of ES cells.

20. Runx1 is essential for hematopoietic commitment at the hemangioblast stage of development in vitro.

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