
A publication of the American Society for Bone and Mineral Research
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Abstract
Journal of Bone and Mineral Research, Journal of Bone and Mineral Research March 2004:19:429-435 (doi: 10.1359/JBMR.0301264)
FGF-23 Is a Potent Regulator of Vitamin D Metabolism and Phosphate Homeostasis Takashi Shimada, 1 Hisashi Hasegawa, 1 Yuji Yamazaki, 1 Takanori Muto, 1 Rieko Hino, 1 Yasuhiro Takeuchi, 2 Toshiro Fujita, 2 Kazuhiko Nakahara, 3 Seiji Fukumoto, 3 Takeyoshi Yamashita1 1Pharmaceutical Research Laboratories, KIRIN Brewery Co., Ltd., Takasaki, Gunma, Japan; 2Department of Medicine, University of Tokyo School of Medicine, Bunkyo-ku, Tokyo, Japan; 3Department of Laboratory Medicine, University of Tokyo Hospital, Bunkyo-ku, Tokyo, Japan. Address reprint requests to: Takeyoshi Yamashita, PhD Nephrology, Pharmaceutical Research Labs KIRIN Brewery Co. Ltd. Miyahara 3 Takasaki, Gunma 370-1295, Japan E-mail: tyamashita@kirin.co.jp We analyzed the effects of an FGF-23 injection in vivo. FGF-23 caused a reduction in serum 1,25-dihydroxyvitamin D by altering the expressions of key enzymes for the vitamin D metabolism followed by hypophosphatemia. This study indicates that FGF-23 is a potent regulator of the vitamin D and phosphate metabolism. Introduction: The pathophysiological contribution of FGF-23 in hypophosphatemic diseases was supported by animal studies in which the long-term administration of recombinant fibroblast growth factor-23 reproduced hypophosphatemic rickets with a low serum 1,25-dihydroxyvitamin D [1,25(OH)2D] level. However, there is no clear understanding of how FGF-23 causes these changes. Materials and Methods: To elucidate the molecular mechanisms of the FGF-23 function, we investigated the short-term effects of a single administration of recombinant FGF-23 in normal and parathyroidectmized animals. Results: An injection of recombinant FGF-23 caused a reduction in serum phosphate and 1,25(OH)2D levels. A decrease in serum phosphate was first observed 9 h after the injection and was accompanied with a reduction in renal mRNA and protein levels for the type IIa sodium-phosphate cotransporter (NaPi-2a). There was no increase in the parathyroid hormone (PTH) level throughout the experiment, and hypophosphatemia was reproduced by FGF-23 in parathyroidectomized rats. Before this hypophosphatemic effect, the serum 1,25(OH)2D level had already descended at 3 h and reached the nadir 9 h after the administration. FGF-23 reduced renal mRNA for 25-hydroxyvitamin D-1α-hydroxylase and increased that for 25-hydroxyvitamin D-24-hydroxylase starting at 1 h. In addition, an injection of calcitriol into normal mice increased the serum FGF-23 level within 4 h. Conclusions: FGF-23 regulates NaPi-2a independently of PTH and the serum 1,25(OH)2D level by controlling renal expressions of key enzymes of the vitamin D metabolism. In conclusion, FGF-23 is a potent regulator of phosphate and vitamin D homeostasis. Cited byYuji Yamazaki, Taro Tamada, Noriyuki Kasai, Itaru Urakawa, Yukiko Aono, Hisashi Hasegawa, Toshiro Fujita, Ryota Kuroki, Takeyoshi Yamashita, Seiji Fukumoto and Takashi Shimada. (2008) Anti-FGF23 Neutralizing Antibodies Show the Physiological Role and Structural Features of FGF23. Journal of Bone and Mineral Research 23:9, 1509-1518 Online publication date: 1-Sep-2008. Abstract | Full Text | Printable PDF (2736 KB) Kenneth E White and Michael J Econs. (2008) Chapter 23. Fibroblast Growth Factor-23. Primer 7:1, 112-116Online publication date: 1-Jan-2008. Citation | Full Text | Printable PDF (85 KB) Peter W Jurutka, Leonid Bartik, G Kerr Whitfield, Douglas R Mathern, Thomas K Barthel, Miriam Gurevich, Jui-Cheng Hsieh, Magdalena Kaczmarska, Carol A Haussler and Mark R Haussler. (2007) Vitamin D Receptor: Key Roles in Bone Mineral Pathophysiology, Molecular Mechanism of Action, and Novel Nutritional Ligands. Journal of Bone and Mineral Research 22:s2, V2-V10 Online publication date: 1-Dec-2007. Abstract | Full Text | Printable PDF (2343 KB) Jordan L Geller, Azarmindokht Khosravi, Marilyn H Kelly, Mara Riminucci, John S Adams and Michael T Collins. (2007) Cinacalcet in the Management of Tumor-Induced Osteomalacia. Journal of Bone and Mineral Research 22:6, 931-937 Online publication date: 1-Jun-2007. Abstract | Full Text | Printable PDF (2773 KB) Yaacov Frishberg, Nobuaki Ito, Choni Rinat, Yuji Yamazaki, Sofia Feinstein, Itaru Urakawa, Paulina Navon-Elkan, Rachel Becker-Cohen, Takeyoshi Yamashita, Kaori Araya, Takashi Igarashi, Toshiro Fujita and Seiji Fukumoto. (2007) Hyperostosis–Hyperphosphatemia Syndrome: A Congenital Disorder of O-Glycosylation Associated With Augmented Processing of Fibroblast Growth Factor 23. Journal of Bone and Mineral Research 22:2, 235-242 Online publication date: 1-Feb-2007. Abstract | Full Text | Printable PDF (1162 KB) Sherri-Ann M Burnett, Samantha C Gunawardene, F Richard Bringhurst, Harald Jüppner, Hang Lee and Joel S Finkelstein. (2006) Regulation of C-Terminal and Intact FGF-23 by Dietary Phosphate in Men and Women. Journal of Bone and Mineral Research 21:8, 1187-1196 Online publication date: 1-Aug-2006. Abstract | Full Text | Printable PDF (1044 KB) Michael T Collins, John R Lindsay, Alka Jain, Marilyn H Kelly, Carolee M Cutler, Lee S Weinstein, Jie Liu, Neal S Fedarko and Karen K Winer. (2005) Fibroblast Growth Factor-23 Is Regulated by 1α,25-Dihydroxyvitamin D. Journal of Bone and Mineral Research 20:11, 1944-1950 Online publication date: 1-Nov-2005. Abstract | Full Text | Printable PDF (151 KB) |
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