Contact inhibition of VEGF-induced proliferation requires vascular endothelial cadherin, β-catenin, and the phosphatase DEP-1/CD148

Author:

Lampugnani Maria Grazia12,Zanetti Adriana2,Corada Monica12,Takahashi Takamune3,Balconi Giovanna2,Breviario Ferruccio12,Orsenigo Fabrizio1,Cattelino Anna1,Kemler Rolf4,Daniel Thomas O.5,Dejana Elisabetta126

Affiliation:

1. FIRC Institute of Molecular Oncology, 20139 Milan, Italy

2. Mario Negri Institute for Pharmacological Research, 20157 Milan, Italy

3. Division of Nephrology, Department Medicine and Cell Biology, Vanderbilt University, Nashville, TN 37235

4. Max Planck Institute of Immunology, D-79108 Freiburg, Germany

5. Immunex Corp., Seattle, WA 98101

6. University of Milan, School of Sciences, 20100 Milan, Italy

Abstract

Confluent endothelial cells respond poorly to the proliferative signals of VEGF. Comparing isogenic endothelial cells differing for vascular endothelial cadherin (VE-cadherin) expression only, we found that the presence of this protein attenuates VEGF-induced VEGF receptor (VEGFR) 2 phosphorylation in tyrosine, p44/p42 MAP kinase phosphorylation, and cell proliferation. VE-cadherin truncated in β-catenin but not p120 binding domain is unable to associate with VEGFR-2 and to induce its inactivation. β-Catenin–null endothelial cells are not contact inhibited by VE-cadherin and are still responsive to VEGF, indicating that this protein is required to restrain growth factor signaling. A dominant-negative mutant of high cell density–enhanced PTP 1 (DEP-1)//CD148 as well as reduction of its expression by RNA interference partially restore VEGFR-2 phosphorylation and MAP kinase activation. Overall the data indicate that VE-cadherin–β-catenin complex participates in contact inhibition of VEGF signaling. Upon stimulation with VEGF, VEGFR-2 associates with the complex and concentrates at cell–cell contacts, where it may be inactivated by junctional phosphatases such as DEP-1. In sparse cells or in VE-cadherin–null cells, this phenomenon cannot occur and the receptor is fully activated by the growth factor.

Publisher

Rockefeller University Press

Subject

Cell Biology

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