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The heparin-binding domain of VEGF165 directly binds to integrin αvβ3 and plays a critical role in signaling.

Takada, Y. K.; Yu, J.; Ye, X.; Wu, C.-Y.; Felding, B. H.; Fujita, M.; takada, y.

2023-11-14 biochemistry
10.1101/2023.11.14.567104 bioRxiv
Show abstract

VEGF-A is a key cytokine in tumor angiogenesis and a major therapeutic target for cancer. VEGF165 is the predominant isoform and is the most potent angiogenesis stimulant. VEGFR2/KDR domains 2 and 3 (D2D3) bind to the N-terminal domain (NTD, residues 1-110) of VEGF165. Since removal of the heparin-binding domain (HBD, residues 111-165) markedly reduced the mitogenic activity of VEGF165, it has been proposed that the HBD plays a critical role in the mitogenicity of VEGF165. Integrin v{beta}3 has been shown to bind to VEGF165, but the role of integrin v{beta}3 in VEGF165 signaling are unclear. Here we describe that v{beta}3 specifically bound to the isolated HBD, but not to the NTD. We identified several critical amino acid residues in HBD for integrin binding (Arg-123, Arg-124, Lys-125, Lys-140, Arg-145, and Arg-149) by docking simulation and mutagenesis, and generated full-length VEGF165 that is defective in integrin binding by including mutations in the HBD. The full-length VEGF165 mutant defective in integrin binding (R123A/R124A/K125A/K140A/R145A/R149A) was defective in ERK1/2 phosphorylation, integrin {beta}3 phosphorylation, and KDR phosphorylation, although the mutation did not affect KDR binding to VEGF165. We propose a model in which VEGF165 induces KDR (through NTD)-VEGF165 (through HBD)-integrin v{beta}3 ternary complex formation on the cell surface and this process is critically involved in potent mitogenicity of VEGF165.

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