Pathogenic role of Fgf23 in Hyp mice

被引:356
作者
Liu, Shiguang
Zhou, Jianping
Tang, Wen
Jiang, Xi
Rowe, David W.
Quarles, L. Darryl
机构
[1] Univ Kansas, Med Ctr, Kidney Inst, Kansas City, KS 66103 USA
[2] Univ Connecticut, Ctr Hlth, Dept Genet & Dev Biol, Farmington, CT USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM | 2006年 / 291卷 / 01期
关键词
X-inked hypophosphatemia; hypophosphatemia; osteomalacia; fibroblastic growth factor-23;
D O I
10.1152/ajpendo.00008.2006
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Inactivating mutations of the PHEX (phosphate-regulating gene with homologies to endopeptidases on the X chromosome) endopeptidase, the disease-causing gene in X-linked hypophosphatemia (XLH), results in increased circulating levels of fibroblastic growth factor-23 (FGF23), a bone-derived phosphaturic factor. To determine the causal role of FGF23 in XLH, we generated a combined Fgf23-deficient enhanced green fluorescent protein (eGFP) reporter and Phex-deficient Hyp mouse model (Fgf23(+/-)IHyp). eGFP expression was expressed in osteocytes embedded in bone that exhibited marked upregulation of eGFP in response to Phex deficiency and in CD31-positive cells in bone marrow venules that expressed low eGFP levels independently of Phex. In bone marrow stromal cells (BMSCs) derived from Fgf23(+/-)IHyp mice, eGFP expression was also selectively increased in osteocyte-like cells within mineralization nodules and detected in low levels in CD31-positive cells. Surprisingly, eGFP expression was not increased in cell surface osteoblasts, indicating that Phex deficiency is necessary but not sufficient for increased Fgf23 expression in the osteoblast lineage. Additional factors, associated with either osteocyte differentiation and/or extracellular matrix, are necessary for Phex deficiency to stimulate Fgf23 gene transcription in bone. Regardless, the deletion of Fgf23 from Hyp mice reversed the hypophosphatemia, abnormal 1,25(OH)(2)D-3 levels, rickets, and osteomalacia associated with Phex deficiency. These results suggest that Fgf23 acts downstream of Phex to cause both the renal and bone phenotypes in Hyp mice.
引用
收藏
页码:E38 / E49
页数:12
相关论文
共 38 条
[1]  
Aono Y, 2003, J BONE MINER RES, V18, pS16
[2]   Transgenic mice overexpressing human fibroblast growth factor 23 (R176Q) delineate a putative role for parathyroid hormone in renal phosphate wasting disorders [J].
Bai, XY ;
Miao, DS ;
Li, JR ;
Goltzman, D ;
Karaplis, AC .
ENDOCRINOLOGY, 2004, 145 (11) :5269-5279
[3]   The autosomal dominant hypophosphatemic rickets R176Q mutation in fibroblast growth factor 23 resists proteolytic cleavage and enhances in vivo biological potency [J].
Bai, XY ;
Miao, DS ;
Goltzman, D ;
Karaplis, AC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (11) :9843-9849
[4]   Pex/PEX tissue distribution and evidence for a deletion in the 3' region of the Pex gene in X-linked hypophosphatemic mice [J].
Beck, L ;
Soumounou, Y ;
Martel, J ;
Krishnamurthy, G ;
Gauthier, C ;
Goodyer, CG ;
Tenenhouse, HS .
JOURNAL OF CLINICAL INVESTIGATION, 1997, 99 (06) :1200-1209
[5]   FGF23 is processed by proprotein convertases but not by PHEX [J].
Beret-Pagès, A ;
Lorenz-Depiereux, B ;
Zischka, H ;
White, KE ;
Econs, MJ ;
Strom, TM .
BONE, 2004, 35 (02) :455-462
[6]   cDNA cloning of the murine Pex gene implicated in X-linked hypophosphatemia and evidence for expression in bone [J].
Du, L ;
Desbarats, M ;
Viel, J ;
Glorieux, FH ;
Cawthorn, C ;
Ecarot, B .
GENOMICS, 1996, 36 (01) :22-28
[7]  
ECAROT B, 1992, J BONE MINER RES, V7, P215
[8]   TUMOR-INDUCED OSTEOMALACIA - UNVEILING A NEW HORMONE [J].
ECONS, MJ ;
DREZNER, MK .
NEW ENGLAND JOURNAL OF MEDICINE, 1994, 330 (23) :1679-1681
[9]   A GENE (PEX) WITH HOMOLOGIES TO ENDOPEPTIDASES IS MUTATED IN PATIENTS WITH X-LINKED HYPOPHOSPHATEMIC RICKETS [J].
FRANCIS, F ;
HENNIG, S ;
KORN, B ;
REINHARDT, R ;
DEJONG, P ;
POUSTKA, A ;
LEHRACH, H ;
ROWE, PSN ;
GOULDING, JN ;
SUMMERFIELD, T ;
MOUNTFORD, R ;
READ, AP ;
POPOWSKA, E ;
PRONICKA, E ;
DAVIES, KE ;
ORIORDAN, JLH ;
ECONS, MJ ;
NESBITT, T ;
DREZNER, MK ;
OUDET, C ;
PANNETIER, S ;
HANAUER, A ;
STROM, TM ;
MEINDL, A ;
LORENZ, B ;
CAGNOLI, M ;
MOHNIKE, KL ;
MURKEN, J ;
MEITINGER, T .
NATURE GENETICS, 1995, 11 (02) :130-136
[10]   Fibroblast growth factor-23 is the phosphaturic factor in tumor-induced osteomalacia and may be phosphatonin [J].
Fukumoto, S ;
Yamashita, T .
CURRENT OPINION IN NEPHROLOGY AND HYPERTENSION, 2002, 11 (04) :385-389