Neuropilin-1 regulates platelet-derived growth factor receptor signalling in mesenchymal stem cells

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Abstract

Using human MSCs (mesenchymal stem cells) lacking VEGF (vascular endothelial growth factor) receptors, we show that the pro-angiogenic receptor neuropilin-1 associates with phosphorylated PDGFRs [PDGF (platelet-derived growth factor) receptors], thereby regulating cell signalling, migration, proliferation and network assembly. Neuropilin-1 co-immunoprecipitated and co-localized with phosphorylated PDGFRs in the presence of growth factors. Neuropilin-1 knockdown blocked PDGFAA-induced PDGFRα phosphorylation and migration, reduced PDGF-BB-induced PDGFRβ activation and migration, blocked VEGF-Aactivation of both PDGFRs, and attenuated proliferation. Neuropilin-1 prominently co-localized with both PDGFRs within MSCnetworks assembled in Matrigel™ and in the chorioallantoic membrane vasculature microenvironment, and its knockdown grossly disrupted network assembly and decreased PDGFR signalling. Thus neuropilin-1 regulates MSCs by forming ligandspecific receptor complexes that direct PDGFR signalling, especially the PDGFRα homodimer. This receptor cross-talk may control the mobilization of MSCs in neovascularization and tissue remodelling. © The Authors.

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Ball, S. G., Bayley, C., Shuttleworth, C. A., & Kielty, C. M. (2010). Neuropilin-1 regulates platelet-derived growth factor receptor signalling in mesenchymal stem cells. Biochemical Journal, 427(1), 29–40. https://doi.org/10.1042/BJ20091512

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