Distinct angiogenic mediators are required for basic fibroblast growth factor–and vascular endothelial growth factor–induced angiogenesis: the role of cytoplasmic …

W Yan, B Bentley, R Shao - Molecular biology of the cell, 2008 - Am Soc Cell Biol
W Yan, B Bentley, R Shao
Molecular biology of the cell, 2008Am Soc Cell Biol
Signaling pathways engaged by angiogenic factors bFGF and VEGF in tumor angiogenesis
are not fully understood. The current study identifies cytoplasmic tyrosine kinase c-Abl as a
key factor differentially mediating bFGF-and VEGF-induced angiogenesis in microvascular
endothelial cells. STI571, a c-Abl kinase inhibitor, only inhibited bFGF-but not VEGF-induced
angiogenesis. bFGF induced membrane receptor cooperation between integrin β3 and FGF
receptor, and triggered a downstream cascade including FAK, c-Abl, and MAPK. This …
Signaling pathways engaged by angiogenic factors bFGF and VEGF in tumor angiogenesis are not fully understood. The current study identifies cytoplasmic tyrosine kinase c-Abl as a key factor differentially mediating bFGF- and VEGF-induced angiogenesis in microvascular endothelial cells. STI571, a c-Abl kinase inhibitor, only inhibited bFGF- but not VEGF-induced angiogenesis. bFGF induced membrane receptor cooperation between integrin β3 and FGF receptor, and triggered a downstream cascade including FAK, c-Abl, and MAPK. This signaling pathway is different from one utilized by VEGF that includes integrin β5, VEGF receptor-2, Src, FAK, and MAPK. Ectopic expression of wild-type c-Abl sensitized angiogenic response to bFGF, but kinase dead mutant c-Abl abolished this activity. Furthermore, the wild-type c-Abl enhanced angiogenesis in both Matrigel implantation and tumor xenograft models. These data provide novel insights into c-Abl's differential functions in mediating bFGF- and VEGF-induced angiogenesis.
Am Soc Cell Biol