Literature DB >> 20357029

Phosphaturic action of fibroblast growth factor 23 in Npt2 null mice.

Yuka Tomoe1, Hiroko Segawa, Kazuyo Shiozawa, Ichiro Kaneko, Rieko Tominaga, Etsuyo Hanabusa, Fumito Aranami, Junya Furutani, Shoji Kuwahara, Sawako Tatsumi, Mitsutu Matsumoto, Mikiko Ito, Ken-ichi Miyamoto.   

Abstract

In the present study, we evaluated the roles of type II and type III sodium-dependent P(i) cotransporters in fibroblast growth factor 23 (FGF23) activity by administering a vector encoding FGF23 with the R179Q mutation (FGF23M) to wild-type (WT) mice, Npt2a knockout (KO) mice, Npt2c KO mice, and Npt2a(-/-)Npt2c(-/-) mice (DKO mice). In Npt2a KO mice, FGF23M induced severe hypophosphatemia and markedly decreased the levels of Npt2c, type III Na-dependent P(i) transporter (PiT2) protein, and renal Na/P(i) transport activity. In contrast, in Npt2c KO mice, FGF23M decreased plasma phosphate levels comparable to those in FGF23M-injected WT mice. In DKO mice with severe hypophosphatemia, FGF23M administration did not induce an additional increase in urinary phosphate excretion. FGF23 administration significantly decreased intestinal Npt2b protein levels in WT mice but had no effect in Npt2a, Npt2c, and DKO mice, despite marked suppression of plasma 1,25(OH)(2)D(3) levels in all the mutant mice. The main findings were as follow: 1) FGF23-dependent phosphaturic activity in Npt2a KO mice is dependent on renal Npt2c and PiT-2 protein; 2) in DKO mice, renal P(i) reabsorption is not further decreased by FGF23M, but renal vitamin D synthesis is suppressed; and 3) downregulation of intestinal Npt2b may be mediated by a factor(s) other than 1,25(OH)(2)D(3). These findings suggest that Npt2a, Npt2c, and PiT-2 are necessary for the phosphaturic activity of FGF23. Thus complementary regulation of Npt2 family proteins may be involved in systemic P(i) homeostasis.

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Year:  2010        PMID: 20357029     DOI: 10.1152/ajprenal.00375.2009

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  25 in total

Review 1.  Biology of Fibroblast Growth Factor 23: From Physiology to Pathology.

Authors:  Marie Courbebaisse; Beate Lanske
Journal:  Cold Spring Harb Perspect Med       Date:  2018-05-01       Impact factor: 6.915

2.  Novel NaPi-IIc mutations causing HHRH and idiopathic hypercalciuria in several unrelated families: long-term follow-up in one kindred.

Authors:  Y Yu; S R Sanderson; M Reyes; A Sharma; N Dunbar; T Srivastava; H Jüppner; C Bergwitz
Journal:  Bone       Date:  2012-02-24       Impact factor: 4.398

Review 3.  Role of αKlotho and FGF23 in regulation of type II Na-dependent phosphate co-transporters.

Authors:  Ming Chang Hu; Mingjun Shi; Orson W Moe
Journal:  Pflugers Arch       Date:  2018-12-01       Impact factor: 3.657

Review 4.  DENTAL ENAMEL FORMATION AND IMPLICATIONS FOR ORAL HEALTH AND DISEASE.

Authors:  Rodrigo S Lacruz; Stefan Habelitz; J Timothy Wright; Michael L Paine
Journal:  Physiol Rev       Date:  2017-07-01       Impact factor: 37.312

Review 5.  Control of phosphate balance by the kidney and intestine.

Authors:  Ichiro Kaneko; Sawako Tatsumi; Hiroko Segawa; Ken-Ichi Miyamoto
Journal:  Clin Exp Nephrol       Date:  2016-11-30       Impact factor: 2.801

Review 6.  Novel bone metabolism-associated hormones: the importance of the pre-analytical phase for understanding their physiological roles.

Authors:  Giovanni Lombardi; Mosè Barbaro; Massimo Locatelli; Giuseppe Banfi
Journal:  Endocrine       Date:  2017-02-08       Impact factor: 3.633

Review 7.  Regulation of renal phosphate handling: inter-organ communication in health and disease.

Authors:  Sawako Tatsumi; Atsumi Miyagawa; Ichiro Kaneko; Yuji Shiozaki; Hiroko Segawa; Ken-Ichi Miyamoto
Journal:  J Bone Miner Metab       Date:  2015-08-22       Impact factor: 2.626

8.  Interactions between calcium and phosphorus in the regulation of the production of fibroblast growth factor 23 in vivo.

Authors:  Stephen J Quinn; Alex R B Thomsen; Jian L Pang; Lakshmi Kantham; Hans Bräuner-Osborne; Martin Pollak; David Goltzman; Edward M Brown
Journal:  Am J Physiol Endocrinol Metab       Date:  2012-12-11       Impact factor: 4.310

9.  Compound deletion of Fgfr3 and Fgfr4 partially rescues the Hyp mouse phenotype.

Authors:  Hua Li; Aline Martin; Valentin David; L Darryl Quarles
Journal:  Am J Physiol Endocrinol Metab       Date:  2010-12-07       Impact factor: 4.310

10.  Selective pharmacological inhibition of the sodium-dependent phosphate cotransporter NPT2a promotes phosphate excretion.

Authors:  Valerie Clerin; Hiroshi Saito; Kevin J Filipski; An Hai Nguyen; Jeonifer Garren; Janka Kisucka; Monica Reyes; Harald Jüppner
Journal:  J Clin Invest       Date:  2020-12-01       Impact factor: 14.808

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