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Molecular basis for fibroblast growth factor 23 O-glycosylation by GalNAc-T3

Nat Chem Biol. 2020; 
de Las Rivas M, Paul Daniel EJ, Narimatsu Y, Compañón I, Kato K, Hermosilla P, Thureau A, Ceballos-Laita L, Coelho H, Bernadó P, Marcelo F, Hansen L, Maeda R, Lostao A, , Corzana F, Clausen H, Gerken TA, Hurtado-Guerrero R, .
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Codon Optimization The DNA sequence encoding amino acid residues 92–633 of the human GalNAc-T3 (HsGalNAc-T3) was codon optimized and synthesized by GenScript for expression in Pichia pastoris.... The DNA sequence encoding amino acid residues 91–631 of the TgGalNAc-T3 was codon optimized and synthesized by GenScript for expression in P. Get A Quote

Abstract

Polypeptide GalNAc-transferase T3 (GalNAc-T3) regulates fibroblast growth factor 23 (FGF23) by O-glycosylating Thr178 in a furin proprotein processing motif RHT178R↓S. FGF23 regulates phosphate homeostasis and deficiency in GALNT3 or FGF23 results in hyperphosphatemia and familial tumoral calcinosis. We explored the molecular mechanism for GalNAc-T3 glycosylation of FGF23 using engineered cell models and biophysical studies including kinetics, molecular dynamics and X-ray crystallography of GalNAc-T3 complexed to glycopeptide substrates. GalNAc-T3 uses a lectin domain mediated mechanism to glycosylate Thr178 requiring previous glycosylation at Thr171. Notably, Thr178 is a poor substrate site with limiting gly... More

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