4.8 Article

The Robo4 cytoplasmic domain is dispensable for vascular permeability and neovascularization

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms13517

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  1. NHLBI [1R01HLI125811]
  2. NEI [1R01EY025979-01]
  3. Agence Nationale de la Recherche (ANR-GANDHI, ANR-NOVA)
  4. T32 grant from NHLBL [5T32HL007950-15]

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Vascular permeability and neovascularization are implicated in many diseases including retinopathies and diabetic wound healing. Robo4 is an endothelial-specific transmembrane receptor that stabilizes the vasculature, as shown in Robo4(-/-) mice that develop hyper-permeability, but how Robo4 signals remained unclear. Here we show that Robo4 deletion enhances permeability and revascularization in oxygen-induced retinopathy (OIR) and accelerates cutaneous wound healing. To determine Robo4 signalling pathways, we generated transgenic mice expressing a truncated Robo4 lacking the cytoplasmic domain (Robo4 Delta CD). Robo4 Delta CD expression is sufficient to prevent permeability, and inhibits OIR revascularization and wound healing in Robo4(-/-) mice. Mechanistically, Robo4 does not affect Slit2 signalling, but Robo4 and Robo4 Delta CD counteract Vegfr2-Y949 (Y951 in human VEGFR2) phosphorylation by signalling through the endothelial UNC5B receptor. We conclude that Robo4 inhibits angiogenesis and vessel permeability independently of its cytoplasmic domain, while activating VEGFR2-Y951 via ROBO4 inhibition might accelerate tissue revascularization in retinopathy of prematurity and in diabetic patients.

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