Cloning and characterization of FGF23 as a causative factor of tumor-induced osteomalacia
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- 8 May 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (11), 6500-6505
- https://doi.org/10.1073/pnas.101545198
Abstract
Tumor-induced osteomalacia (TIO) is one of the paraneoplastic diseases characterized by hypophosphatemia caused by renal phosphate wasting. Because removal of responsible tumors normalizes phosphate metabolism, an unidentified humoral phosphaturic factor is believed to be responsible for this syndrome. To identify the causative factor of TIO, we obtained cDNA clones that were abundantly expressed only in a tumor causing TIO and constructed tumor-specific cDNA contigs. Based on the sequence of one major contig, we cloned 2,270-bp cDNA, which turned out to encode fibroblast growth factor 23 (FGF23). Administration of recombinant FGF23 decreased serum phosphate in mice within 12 h. When Chinese hamster ovary cells stably expressing FGF23 were s.c. implanted into nude mice, hypophosphatemia with increased renal phosphate clearance was observed. In addition, a high level of serum alkaline phosphatase, low 1,25-dihydroxyvitamin D, deformity of bone, and impairment of body weight gain became evident. Histological examination showed marked increase of osteoid and widening of growth plate. Thus, continuous production of FGF23 reproduced clinical, biochemical, and histological features of TIO in vivo. Analyses for recombinant FGF23 products produced by Chinese hamster ovary cells indicated proteolytic cleavage of FGF23 at the RXXR motif. Recent genetic study indicates that missense mutations in this RXXR motif of FGF23 are responsible for autosomal dominant hypophosphatemic rickets, another hypophosphatemic disease with similar features to TIO. We conclude that overproduction of FGF23 causes TIO, whereas mutations in the FGF23 gene result in autosomal dominant hypophosphatemic rickets possibly by preventing proteolytic cleavage and enhancing biological activity of FGF23.Keywords
This publication has 24 references indexed in Scilit:
- The Autosomal Dominant Hypophosphatemic Rickets (ADHR) Gene Is a Secreted Polypeptide Overexpressed by Tumors that Cause Phosphate WastingJournal of Clinical Endocrinology & Metabolism, 2001
- Identification of a Novel Fibroblast Growth Factor, FGF-23, Preferentially Expressed in the Ventrolateral Thalamic Nucleus of the BrainBiochemical and Biophysical Research Communications, 2000
- MEPE, a New Gene Expressed in Bone Marrow and Tumors Causing OsteomalaciaGenomics, 2000
- New insights into the pathogenesis of inherited phosphate wasting disordersBone, 1999
- Characteristics of tumor cell bioactivity in oncogenic osteomalaciaMolecular and Cellular Endocrinology, 1996
- Candidate 56 and 58 kDa protein(s) responsible for mediating the renal defects in oncogenic hypophosphatemic osteomalaciaBone, 1996
- Dentin Matrix Protein-1, A Candidate Gene for Dentinogenesis ImperfectaConnective Tissue Research, 1996
- A gene (PEX) with homologies to endopeptidases is mutated in patients with X–linked hypophosphatemic ricketsNature Genetics, 1995
- Oncogenic osteomalacia: evidence for a humoral phosphaturic factorJournal of Clinical Endocrinology & Metabolism, 1995
- Crosstransplantation of kidneys in normal and Hyp mice. Evidence that the Hyp mouse phenotype is unrelated to an intrinsic renal defect.Journal of Clinical Investigation, 1992