Publication | Open Access
Molecular Insights into the Klotho-Dependent, Endocrine Mode of Action of Fibroblast Growth Factor 19 Subfamily Members
530
Citations
37
References
2007
Year
Aldo-keto ReductaseGlycobiologyCell ProliferationChemical BiologyCellular PhysiologyEndocrine ModeVitamin D HomeostasisFibroblast Growth FactorCell SignalingFibrosisMolecular PhysiologyProtein FunctionBiochemistryGrowth HormoneHeparin/heparan SulfateMolecular InsightsSubfamily MembersEndocrinologyCell BiologyDevelopmental BiologyNatural SciencesMetabolic RegulationFgf23 DivergesMetabolismMedicineExtracellular Matrix
Unique among fibroblast growth factors (FGFs), FGF19, -21, and -23 act in an endocrine fashion to regulate energy, bile acid, glucose, lipid, phosphate, and vitamin D homeostasis. These FGFs require the presence of Klotho/betaKlotho in their target tissues. Here, we present the crystal structures of FGF19 alone and FGF23 in complex with sucrose octasulfate, a disaccharide chemically related to heparin. The conformation of the heparin-binding region between beta strands 10 and 12 in FGF19 and FGF23 diverges completely from the common conformation adopted by paracrine-acting FGFs. A cleft between this region and the beta1-beta2 loop, the other heparin-binding region, precludes direct interaction between heparin/heparan sulfate and backbone atoms of FGF19/23. This reduces the heparin-binding affinity of these ligands and confers endocrine function. Klotho/betaKlotho have evolved as a compensatory mechanism for the poor ability of heparin/heparan sulfate to promote binding of FGF19, -21, and -23 to their cognate receptors.
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