Amelioration of the premature ageing-like features of Fgf-23 knockout mice by genetically restoring the systemic actions of FGF-23

被引:46
作者
DeLuca, S. [1 ]
Sitara, D. [1 ]
Kang, K. [2 ]
Marsell, R. [3 ]
Jonsson, K. [3 ]
Taguchi, T. [4 ]
Erben, R. G. [5 ]
Razzaque, M. S. [1 ,4 ]
Lanske, B. [1 ]
机构
[1] Harvard Univ, Sch Dent Med, Dept Dev Biol, Boston, MA 02115 USA
[2] Harvard Univ, Sch Publ Hlth, Dept Genet & Complex Dis, Boston, MA 02115 USA
[3] Univ Uppsala Hosp, Dept Surg Sci, Uppsala, Sweden
[4] Nagasaki Univ, Grad Sch Med Sci, Dept Pathol, Nagasaki 852, Japan
[5] Univ Vet Med, Dept Nat Sci, Vienna, Austria
关键词
organ atrophy; mineral ion homeostasis; vitamin D metabolism; transgene; human FGF23;
D O I
10.1002/path.2409
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Genetic ablation of fibroblast growth factor 23 from mice (Fgf-23(-/-)) results in a short lifespan with numerous abnormal biochemical and morphological features. Such features include kyphosis, hypogonadism and associated infertility, osteopenia, pulmonary emphysema, severe vascular and soft tissue calcifications, and generalized atrophy of various tissues. To determine whether these widespread anomalies in Fgf-23(-/-) mice can be ameliorated by genetically restoring the systemic actions of FGF-23, we generated Fgf23(-/-) mice expressing the human FGF-23 transgene in osteoblasts under the control of the 2.3 kb alpha 1(I) collagen promoter (Fgf-23(-/-) 1hFGF-23-Tg double mutants). This novel mouse model is completely void of all endogenous Fgf-23 activity, but produces human FGF-23 in bone cells that is subsequently released into the circulation. Our results suggest that lack of FKf-23 activities results in extensive premature ageing-like features and early mortality of Fgf-23(-/-) mice, while restoring the systemic effects of FGF-23 significantly ameliorates these phenotypes, with the resultant effect being improved growth, restored fertility, and significantly prolonged survival of double mutants. With regard to their serum biochemistry, double mutants reversed the severe hyperphosphataemia, hypercalcaemia, and hypervitaminosis D found in Fgf-23(-/-) littermates; rather, double mutants show hypophosphataemia and normal serum 1,25-dihydroxyvitamin D-3 levels similar to pure FGF-23 Tg mice. These changes were associated with reduced renal expression of NaPi2a and Ice-hydroxylase, compared to Fgf-23(-/-) mice. FGF-23 acts to prevent widespread abnormal features by acting systemically to regulate phosphate homeostasis and vitamin D metabolism. This novel mouse model provides us with an in vivo tool to study the systemic effects of FGF-23 in regulating mineral ion metabolism and preventing multiple abnormal phenotypes without the interference of native Fgf-23. Copyright (C) 2008 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
引用
收藏
页码:345 / 355
页数:11
相关论文
共 43 条
[1]   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
[2]   The parathyroid is a target organ for FGF23 in rats [J].
Ben-Dov, Iddo Z. ;
Galitzer, Hillel ;
Lavi-Moshayoff, Vardit ;
Goetz, Regina ;
Kuro-o, Makoto ;
Mohammadi, Moosa ;
Sirkis, Roy ;
Naveh-Many, Tally ;
Silver, Justin .
JOURNAL OF CLINICAL INVESTIGATION, 2007, 117 (12) :4003-4008
[3]   An FGF23 missense mutation causes familial tumoral calcinosis with hyperphosphatemia [J].
Benet-Pagès, A ;
Orlik, P ;
Strom, TM ;
Lorenz-Depiereux, B .
HUMAN MOLECULAR GENETICS, 2005, 14 (03) :385-390
[4]  
Bringhurst FR, 1998, WILLIAMS TXB ENDOCRI, P1155
[5]   Loss of DMP1 causes rickets and osteomalacia and identifies a role for osteocytes in mineral metabolism [J].
Feng, Jian Q. ;
Ward, Leanne M. ;
Liu, Shiguang ;
Lu, Yongbo ;
Xie, Yixia ;
Yuan, Baozhi ;
Yu, Xijie ;
Rauch, Frank ;
Davis, Siobhan I. ;
Zhang, Shubin ;
Rios, Hector ;
Drezner, Marc K. ;
Quarles, L. Darryl ;
Bonewald, Lynda F. ;
White, Kenneth E. .
NATURE GENETICS, 2006, 38 (11) :1310-1315
[6]  
Hardie WD, 1997, AM J PATHOL, V151, P1075
[7]   Ablation of vitamin D signaling rescues bone, mineral, and glucose homeostasis in Fgf-23 deficient mice [J].
Hesse, Martina ;
Froehlich, Leopold F. ;
Zeitz, Ute ;
Lanske, Beate ;
Erben, Reinhold G. .
MATRIX BIOLOGY, 2007, 26 (02) :75-84
[8]   FGF-23 in patients with end-stage renal disease on hemodialysis [J].
Imanishi, Y ;
Inaba, M ;
Nakatsuka, K ;
Nagasue, K ;
Okuno, S ;
Yoshihara, A ;
Miura, M ;
Miyauchi, A ;
Kobayashi, K ;
Miki, T ;
Shoji, T ;
Ishimura, E ;
Nishizawa, Y .
KIDNEY INTERNATIONAL, 2004, 65 (05) :1943-1946
[9]   Molecular backgrounds of age-related osteoporosis from mouse genetics approaches [J].
Kawaguchi, Hiroshi .
REVIEWS IN ENDOCRINE & METABOLIC DISORDERS, 2006, 7 (1-2) :17-22
[10]   Role of circulating development of fibroblast growth factor 23 in the secondary hyperparathyroidism [J].
Kazama, JJ ;
Gejyo, F ;
Shigematsu, T ;
Fukagawa, M .
THERAPEUTIC APHERESIS AND DIALYSIS, 2005, 9 (04) :328-330