Abstract
Sprouting angiogenesis drives blood vessel growth in healthy and diseased tissues. Vegf and Dll4/Notch signalling cooperate in a negative feedback loop that specifies endothelial tip and stalk cells to ensure adequate vessel branching and function. Current concepts posit that endothelial cells default to the tip-cell phenotype when Notch is inactive. Here we identify instead that the stalk-cell phenotype needs to be actively repressed to allow tip-cell formation. We show this is a key endothelial function of neuropilin-1 (Nrp1), which suppresses the stalk-cell phenotype by limiting Smad2/3 activation through Alk1 and Alk5. Notch downregulates Nrp1, thus relieving the inhibition of Alk1 and Alk5, thereby driving stalk-cell behaviour. Conceptually, our work shows that the heterogeneity between neighbouring endothelial cells established by the lateral feedback loop of Dll4/Notch utilizes Nrp1 levels as the pivot, which in turn establishes differential responsiveness to TGF-β/BMP signalling.
Publication types
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Research Support, N.I.H., Extramural
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Research Support, Non-U.S. Gov't
MeSH terms
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Activin Receptors, Type I / metabolism*
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Activin Receptors, Type II
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Animals
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Endothelium, Vascular / growth & development*
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Growth Differentiation Factor 2 / metabolism
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Human Umbilical Vein Endothelial Cells
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Humans
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Intracellular Signaling Peptides and Proteins / metabolism
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Membrane Proteins / metabolism
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Mice
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Neuropilin-1 / metabolism*
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Phenotype
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Protein Serine-Threonine Kinases / metabolism*
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Receptor, Transforming Growth Factor-beta Type I
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Receptors, Notch / metabolism*
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Receptors, Transforming Growth Factor beta / metabolism*
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Smad2 Protein / metabolism
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Smad3 Protein / metabolism
Substances
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Gdf2 protein, mouse
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Growth Differentiation Factor 2
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Intracellular Signaling Peptides and Proteins
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Membrane Proteins
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Receptors, Notch
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Receptors, Transforming Growth Factor beta
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Smad2 Protein
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Smad3 Protein
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delta protein
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Neuropilin-1
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Protein Serine-Threonine Kinases
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Activin Receptors, Type I
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Activin Receptors, Type II
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Acvrl1 protein, mouse
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Receptor, Transforming Growth Factor-beta Type I
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TGFBR1 protein, human
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Tgfbr1 protein, mouse