Recent studies have shown that in the developing embryo, arterial and venous identity is established by genetic mechanisms before circulation begins. Vascular endothelial growth factor (VEGF) signaling and its downstream Notch pathway play critical roles in arterial cell fate determination. We have recently shown that Foxc1 and Foxc2, two closely related Fox transcription factors, are essential for arterial cell specification during development by directly inducing the transcription of Delta-like 4 (Dll4), a ligand for Notch receptors. However, the basic mechanisms whereby the VEGF and Notch signaling pathways control transcriptional regulation of arterial-specific genes have yet to be elucidated.In the current study, we examined whether an...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of...
Endothelial cells (ECs) lining arteries and veins have distinct molecular/functional signatures. The...
AbstractAccumulating evidence suggests that in the vertebrate embryo, acquisition of arterial and ve...
Vegf signaling specifies arterial fate during early vascular development by inducing the transcripti...
SummaryVegf signaling specifies arterial fate during early vascular development by inducing the tran...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Endothelial colony forming cells (ECFC) or late blood outgrowth endothelial cells (BOEC) have been p...
One of the key mechanisms linking cell signaling and control of gene expression is reversible phosph...
Notch1-Delta-like 4 (Dll4) signaling controls vascular development by regulating endothelial cell (E...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Arterial specification and differentiation are influenced by a number of regulatory pathways, encomp...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of...
Endothelial cells (ECs) lining arteries and veins have distinct molecular/functional signatures. The...
AbstractAccumulating evidence suggests that in the vertebrate embryo, acquisition of arterial and ve...
Vegf signaling specifies arterial fate during early vascular development by inducing the transcripti...
SummaryVegf signaling specifies arterial fate during early vascular development by inducing the tran...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Endothelial colony forming cells (ECFC) or late blood outgrowth endothelial cells (BOEC) have been p...
One of the key mechanisms linking cell signaling and control of gene expression is reversible phosph...
Notch1-Delta-like 4 (Dll4) signaling controls vascular development by regulating endothelial cell (E...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Arterial specification and differentiation are influenced by a number of regulatory pathways, encomp...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of...
Endothelial cells (ECs) lining arteries and veins have distinct molecular/functional signatures. The...