Structural interactions of fibroblast growth factor receptor with its ligands

DJ Stauber, AD DiGabriele… - Proceedings of the …, 2000 - National Acad Sciences
DJ Stauber, AD DiGabriele, WA Hendrickson
Proceedings of the National Academy of Sciences, 2000National Acad Sciences
Fibroblast growth factors (FGFs) effect cellular responses by binding to FGF receptors
(FGFRs). FGF bound to extracellular domains on the FGFR in the presence of heparin
activates the cytoplasmic receptor tyrosine kinase through autophosphorylation. We have
crystallized a complex between human FGF1 and a two-domain extracellular fragment of
human FGFR2. The crystal structure, determined by multiwavelength anomalous diffraction
analysis of the selenomethionyl protein, is a dimeric assemblage of 1: 1 ligand: receptor …
Fibroblast growth factors (FGFs) effect cellular responses by binding to FGF receptors (FGFRs). FGF bound to extracellular domains on the FGFR in the presence of heparin activates the cytoplasmic receptor tyrosine kinase through autophosphorylation. We have crystallized a complex between human FGF1 and a two-domain extracellular fragment of human FGFR2. The crystal structure, determined by multiwavelength anomalous diffraction analysis of the selenomethionyl protein, is a dimeric assemblage of 1:1 ligand:receptor complexes. FGF is bound at the junction between the two domains of one FGFR, and two such units are associated through receptor:receptor and secondary ligand:receptor interfaces. Sulfate ion positions appear to mark the course of heparin binding between FGF molecules through a basic region on receptor D2 domains. This dimeric assemblage provides a structural mechanism for FGF signal transduction.
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