TY - JOUR
T1 - Runx1 is required for progression of CD41+ embryonic precursors into HSCs but not prior to this.
AU - Liakhovitskaia, Anna
AU - Rybtsov, Stanislav
AU - Smith, Tom
AU - Batsivari, Antoniana
AU - Rybtsova, Natalia
AU - Rode, Christina
AU - de Bruijn, Marella
AU - Buchholz, Frank
AU - Gordon-Keylock, Sabrina
AU - Zhao, Suling
AU - Medvinsky, Alexander
N1 - BB/H008780/1, Biotechnology and Biological Sciences Research Council, United KingdomG0500950, Medical Research Council, United KingdomG0900962, Medical Research Council, United KingdomMC_UU_12009/2, Medical Research Council, United Kingdom, Biotechnology and Biological Sciences Research Council, United Kingdom, Medical Research Council, United Kingdom, Wellcome Trust, United Kingdom
PY - 2014/9
Y1 - 2014/9
N2 - Haematopoiesis in adult animals is maintained by haematopoietic stem cells (HSCs), which self-renew and can give rise to all blood cell lineages. The AGM region is an important intra-embryonic site of HSC development and a wealth of evidence indicates that HSCs emerge from the endothelium of the embryonic dorsal aorta and extra-embryonic large arteries. This, however, is a stepwise process that occurs through sequential upregulation of CD41 and CD45 followed by emergence of fully functional definitive HSCs. Although largely dispensable at later stages, the Runx1 transcription factor is crucially important during developmental maturation of HSCs; however, exact points of crucial involvement of Runx1 in this multi-step developmental maturation process remain unclear. Here, we have investigated requirements for Runx1 using a conditional reversible knockout strategy. We report that Runx1 deficiency does not preclude formation of VE-cad+CD45-CD41+ cells, which are phenotypically equivalent to precursors of definitive HSCs (pre-HSC Type I) but blocks transition to the subsequent CD45+ stage (pre-HSC Type II). These data emphasise that developmental progression of HSCs during a very short period of time is regulated by precise stage-specific molecular mechanisms.
AB - Haematopoiesis in adult animals is maintained by haematopoietic stem cells (HSCs), which self-renew and can give rise to all blood cell lineages. The AGM region is an important intra-embryonic site of HSC development and a wealth of evidence indicates that HSCs emerge from the endothelium of the embryonic dorsal aorta and extra-embryonic large arteries. This, however, is a stepwise process that occurs through sequential upregulation of CD41 and CD45 followed by emergence of fully functional definitive HSCs. Although largely dispensable at later stages, the Runx1 transcription factor is crucially important during developmental maturation of HSCs; however, exact points of crucial involvement of Runx1 in this multi-step developmental maturation process remain unclear. Here, we have investigated requirements for Runx1 using a conditional reversible knockout strategy. We report that Runx1 deficiency does not preclude formation of VE-cad+CD45-CD41+ cells, which are phenotypically equivalent to precursors of definitive HSCs (pre-HSC Type I) but blocks transition to the subsequent CD45+ stage (pre-HSC Type II). These data emphasise that developmental progression of HSCs during a very short period of time is regulated by precise stage-specific molecular mechanisms.
KW - AGM region
KW - CD41
KW - HSC
KW - Mouse
KW - Runx1
U2 - 10.1242/dev.110841
DO - 10.1242/dev.110841
M3 - Article
C2 - 25139854
SN - 1477-9129
VL - 141
JO - Development (Cambridge, England)
JF - Development (Cambridge, England)
IS - 17
ER -