4.5 Article

The endothelial adaptor molecule TSAd is required for VEGF-induced angiogenic sprouting through junctional c-Src activation

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SCIENCE SIGNALING
卷 9, 期 437, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/scisignal.aad9256

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资金

  1. Wenner-Gren Postdoctoral Fellowship
  2. Gustav Adolf Johansson Foundation
  3. Swedish Cancer Foundation [CAN 2013/661]
  4. Worldwide Cancer Research [13-1295]
  5. Swedish Science Council [2015-03275]
  6. Italian Association for Cancer Research [14471]
  7. European Research Council [268870]
  8. Beth Israel Deaconess Medical Center
  9. Norwegian Research Council [214202]
  10. Norwegian Cancer Society [17561]
  11. Knut and Alice Wallenberg Foundation project grant Towards control of formation and resolution of edema by deciphering mechanisms of vascular leak and lymphatic function
  12. European Research Council (ERC) [268870] Funding Source: European Research Council (ERC)
  13. Vinnova [2015-03275] Funding Source: Vinnova

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Activation of vascular endothelial growth factor (VEGF) receptor 2 (VEGFR2) by VEGF binding is critical for vascular morphogenesis. In addition, VEGF disrupts the endothelial barrier by triggering the phosphorylation and turnover of the junctional molecule VE-cadherin, a process mediated by the VEGFR2 downstream effectors T cell-specific adaptor (TSAd) and the tyrosine kinase c-Src. We investigated whether the VEGFR2-TSAd-c-Src pathway was required for angiogenic sprouting. Indeed, Tsad-deficient embryoid bodies failed to sprout in response to VEGF. Tsad-deficient mice displayed impaired angiogenesis specifically during tracheal vessel development, but not during retinal vasculogenesis, and in VEGF-loaded Matrigel plugs, but not in those loaded with FGF. The SH2 and proline-rich domains of TSAd bridged VEGFR2 and c-Src, and this bridging was critical for the localization of activated c-Src to endothelial junctions and elongation of the growing sprout, but not for selection of the tip cell. These results revealed that vascular sprouting and permeability are both controlled through the VEGFR2-TSAd-c-Src signaling pathway in a subset of tissues, which may be useful in developing strategies to control tissue-specific pathological angiogenesis.

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