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Dll4 and Notch signalling couples sprouting angiogenesis and artery formation.

Authors :
Pitulescu, Mara E
Pitulescu, Mara E
Schmidt, Inga
Giaimo, Benedetto Daniele
Antoine, Tobiah
Berkenfeld, Frank
Ferrante, Francesca
Park, Hongryeol
Ehling, Manuel
Biljes, Daniel
Rocha, Susana F
Langen, Urs H
Stehling, Martin
Nagasawa, Takashi
Ferrara, Napoleone
Borggrefe, Tilman
Adams, Ralf H
Pitulescu, Mara E
Pitulescu, Mara E
Schmidt, Inga
Giaimo, Benedetto Daniele
Antoine, Tobiah
Berkenfeld, Frank
Ferrante, Francesca
Park, Hongryeol
Ehling, Manuel
Biljes, Daniel
Rocha, Susana F
Langen, Urs H
Stehling, Martin
Nagasawa, Takashi
Ferrara, Napoleone
Borggrefe, Tilman
Adams, Ralf H
Source :
Nature cell biology; vol 19, iss 8, 915-927; 1465-7392
Publication Year :
2017

Abstract

Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of new blood vessels during physiological and pathological angiogenesis. Endothelial tip cells lead sprouts and are thought to suppress tip-like behaviour in adjacent stalk endothelial cells by activating Notch. Here, we show with genetic experiments in postnatal mice that the level of active Notch signalling is more important than the direct Dll4-mediated cell-cell communication between endothelial cells. We identify endothelial expression of VEGF-A and of the chemokine receptor CXCR4 as key processes controlling Notch-dependent vessel growth. Surprisingly, genetic experiments targeting endothelial tip cells in vivo reveal that they retain their function without Dll4 and are also not replaced by adjacent, Dll4-positive cells. Instead, activation of Notch directs tip-derived endothelial cells into developing arteries and thereby establishes that Dll4-Notch signalling couples sprouting angiogenesis and artery formation.

Details

Database :
OAIster
Journal :
Nature cell biology; vol 19, iss 8, 915-927; 1465-7392
Notes :
application/pdf, Nature cell biology vol 19, iss 8, 915-927 1465-7392
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287428826
Document Type :
Electronic Resource