Scinovex
articleTop 10% cited

VEGF <sub>165</sub> mediates formation of complexes containing VEGFR‐2 and neuropilin‐1 that enhance VEGF <sub>165</sub> ‐receptor binding

Journal of Cellular Biochemistry · 2002 · Vol. 85(2) · pp. 357–368
Shay SökerHua‐Quan MiaoMasashi NomiSeiji TakashimaMichael Klagsbrun

Abstract

Co-expression of NRP1 and (VEGFR-2) KDR on the surface of endothelial cells (EC) enhances VEGF165 binding to KDR and EC chemotaxis in response to VEGF165. Overexpression of NRP1 by prostate tumor cells in vivo results in increased tumor angiogenesis and growth. We investigated the molecular mechanisms underlying NRP1-mediated angiogenesis by analyzing the association of NRP1 and KDR. An intracellular complex containing NRP1 and KDR was immunoprecipitated from EC by anti-NRP1 antibodies only in the presence of VEGF165. In contrast, VEGF121, which does not bind to NRP1, did not support complex formation. Complexes containing VEGF165, NRP1, and KDR were also formed in an intercellular fashion by co-culture of EC expressing KDR only, with cells expressing NRP1 only, for example, breast carcinoma cells. VEGF165 also mediated the binding of a soluble NRP1 dimer to cells expressing KDR only, confirming the formation of such complexes. Furthermore, the formation of complexes containing KDR and NRP1 markedly increased 125I-VEGF165 binding to KDR. Our results suggest that formation of a ternary complex of VEGF165, KDR, and NRP1 potentiates VEGF165 binding to KDR. These complexes are formed on the surface of EC and in a juxtacrine manner via association of tumor cell NRP1 and EC KDR.

Angiogenesis and VEGF in CancerAxon Guidance and Neuronal SignalingLymphatic System and DiseasesNeuropilin 1AngiogenesisNeuropilinChemistryKinase insert domain receptorReceptorVascular endothelial growth factor ACell biologyCancer researchMolecular biology

MeSH terms

Affinity LabelsBinding, CompetitiveCells, CulturedCross-Linking ReagentsEndothelium, VascularHumansLymphokinesModels, MolecularNerve Tissue ProteinsPhosphorylationPrecipitin TestsProtein BindingReceptors, Cell SurfaceReceptors, MitogenRecombinant Proteins
Citations
453
FWCI
6.28
field-weighted impact
References
27
Percentile
97%
vs. same field & year
Citations per year
References
Identification of the KDR tyrosine kinase as a receptor for vascular endothelial cell growth factor
Biochemical and Biophysical Research Communications · 1992 · 1,524 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.