SummaryVegf signaling specifies arterial fate during early vascular development by inducing the transcription of Delta-like 4 (Dll4), the earliest Notch ligand gene expressed in arterial precursor cells. Dll4 expression precedes that of Notch receptors in arteries, and factors that direct its arterial-specific expression are not known. To identify the transcriptional program that initiates arterial Dll4 expression, we characterized an arterial-specific and Vegf-responsive enhancer of Dll4. Our findings demonstrate that Notch signaling is not required for initiation of Dll4 expression in arteries and suggest that Notch instead functions as a maintenance factor. Importantly, we find that Vegf signaling activates MAP kinase (MAPK)-dependent E2...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
Cardiovascular disease, of which ischaemic diseases such as stroke and peripheral arterial disease m...
SummaryThe Notch pathway is a highly conserved signaling system that controls a diversity of growth,...
Vegf signaling specifies arterial fate during early vascular development by inducing the transcripti...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
The importance of Notch signaling pathway in the regulation of vascular development and angiogenesis...
Arterial specification and differentiation are influenced by a number of regulatory pathways. While ...
AbstractAccumulating evidence suggests that in the vertebrate embryo, acquisition of arterial and ve...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Delta-like 4 (Dll4), a membrane-bound ligand for Notch1 and Notch4, is selectively expressed in the ...
Recent studies have shown that in the developing embryo, arterial and venous identity is established...
Angiogenesis, the fundamental process by which new blood vessels form from existing ones, depends on...
Articles in International JournalsArteriogenesis requires growth of pre-existing arteriolar collater...
The formation of arteries is thought to occur by the induction of a highly conserved arterial geneti...
AbstractThe appearance of molecular differences between arterial and venous endothelial cells before...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
Cardiovascular disease, of which ischaemic diseases such as stroke and peripheral arterial disease m...
SummaryThe Notch pathway is a highly conserved signaling system that controls a diversity of growth,...
Vegf signaling specifies arterial fate during early vascular development by inducing the transcripti...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
The importance of Notch signaling pathway in the regulation of vascular development and angiogenesis...
Arterial specification and differentiation are influenced by a number of regulatory pathways. While ...
AbstractAccumulating evidence suggests that in the vertebrate embryo, acquisition of arterial and ve...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Delta-like 4 (Dll4), a membrane-bound ligand for Notch1 and Notch4, is selectively expressed in the ...
Recent studies have shown that in the developing embryo, arterial and venous identity is established...
Angiogenesis, the fundamental process by which new blood vessels form from existing ones, depends on...
Articles in International JournalsArteriogenesis requires growth of pre-existing arteriolar collater...
The formation of arteries is thought to occur by the induction of a highly conserved arterial geneti...
AbstractThe appearance of molecular differences between arterial and venous endothelial cells before...
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expr...
Cardiovascular disease, of which ischaemic diseases such as stroke and peripheral arterial disease m...
SummaryThe Notch pathway is a highly conserved signaling system that controls a diversity of growth,...