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1,25-Dihydroxyvitamin D3 regulates furin-mediated FGF23 cleavage
Han Xie, Isinsu Bastepe, Wen Zhou, Birol Ay, Zara Ceraj, Ignacio A. Portales-Castillo, Eva S. Liu, Sherri-Ann M. Burnett-Bowie, Harald Jüppner, Eugene P. Rhee, Murat Bastepe, Petra Simic
Han Xie, Isinsu Bastepe, Wen Zhou, Birol Ay, Zara Ceraj, Ignacio A. Portales-Castillo, Eva S. Liu, Sherri-Ann M. Burnett-Bowie, Harald Jüppner, Eugene P. Rhee, Murat Bastepe, Petra Simic
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Research Article Endocrinology Nephrology

1,25-Dihydroxyvitamin D3 regulates furin-mediated FGF23 cleavage

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Abstract

Intact fibroblast growth factor 23 (iFGF23) is a phosphaturic hormone that is cleaved by furin into N-terminal and C-terminal fragments. Several studies have implicated vitamin D in regulating furin in infections. Thus, we investigated the effect of 1,25-dihydroxyvitamin D3 [1,25(OH)2D] and the vitamin D receptor (VDR) on furin-mediated iFGF23 cleavage. Mice lacking VDR (Vdr–/–) had a 25-fold increase in iFGF23 cleavage, with increased furin levels and activity compared with wild-type (WT) littermates. Inhibition of furin activity blocked the increase in iFGF23 cleavage in Vdr–/– animals and in a Vdr-knockdown osteocyte OCY454 cell line. Chromatin immunoprecipitation revealed VDR binding to DNA upstream of the Furin gene, with more transcription in the absence of VDR. In WT mice, furin inhibition reduced iFGF23 cleavage, increased iFGF23, and reduced serum phosphate levels. Similarly, 1,25(OH)2D reduced furin activity, decreased iFGF23 cleavage, and increased total FGF23. In a post hoc analysis of a randomized clinical trial, we found that ergocalciferol treatment, which increased serum 1,25(OH)2D, significantly decreased serum furin activity and iFGF23 cleavage, compared with placebo. Thus, 1,25(OH)2D inhibits iFGF23 cleavage via VDR-mediated suppression of Furin expression, thereby providing a mechanism by which vitamin D can augment phosphaturic iFGF23 levels.

Authors

Han Xie, Isinsu Bastepe, Wen Zhou, Birol Ay, Zara Ceraj, Ignacio A. Portales-Castillo, Eva S. Liu, Sherri-Ann M. Burnett-Bowie, Harald Jüppner, Eugene P. Rhee, Murat Bastepe, Petra Simic

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Figure 3

Furin inhibition reduces FGF23 cleavage in vivo and in vitro.

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Furin inhibition reduces FGF23 cleavage in vivo and in vitro.
Treatment ...
Treatment with a furin inhibitor (A) reduces cFGF23, (B) increases iFGF23, and (C) reduces cFGF23/iFGF23 in the plasma of WT and Vdr–/– mice (n = 6–11 per group). (D) The furin inhibitor diminishes serum phosphate in WT mice. (E) OCY454 cells with a knockdown of Vdr (Vdr-KD OCY) exhibit a higher cFGF23/iFGF23 ratio than control cells (Cas9 OCY), and furin inhibition increases the relative abundance of iFGF23 in both Cas9 OCY and Vdr KD OCY cells. (F) Quantification of Western blot bands by ImageJ. (G) Vdr KD does not increase cFGF23 in OCY454 with GalnT3 overexpression (GalnT3 Tg) and Fam20C KD; β-actin blots are derived from the same samples run contemporaneously in parallel gels. (H) Quantification of Western blot bands by ImageJ (NIH). Data represent the mean ± SEM. P values by 2-tailed Student’s test. FI, furin inhibitor; Scr, scrambled.

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