首页> 外文OA文献 >Inactivation of klotho function induces hyperphosphatemia even in presence of high serum fibroblast growth factor 23 levels in a genetically engineered hypophosphatemic (Hyp) mouse model
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Inactivation of klotho function induces hyperphosphatemia even in presence of high serum fibroblast growth factor 23 levels in a genetically engineered hypophosphatemic (Hyp) mouse model

机译:基因工程化的低磷酸盐血症(Hyp)小鼠模型中,即使在高血清成纤维细胞生长因子23水平存在的情况下,klotho功能的失活也会诱导高磷酸盐血症

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摘要

Hyp mice possess a mutation that inactivates the phosphate-regulating gene, which is homologous to the endopeptidases of the X-chromosome (PHEX). The mutation is associated with severe hypophosphatemia due to excessive urinary phosphate wasting. Such urinary phosphate wasting in Hyp mice is associated with an increased serum accumulation of fibroblast growth factor (FGF) 23. We wanted to determine the biological significance of increased serum FGF23 levels and concomitant hypophosphatemia in Hyp mice and to evaluate whether FGF23 activity could be modified by manipulating klotho (a cofactor of FGF23 signaling). We generated Hyp and klotho double-mutant mice (Hyp/klotho−/−). Severe hypophosphatemia of Hyp mice was reversed to hyperphosphatemia in Hyp/klotho−/− double mutants, despite the fact that the double mutants showed significantly increased serum levels of FGF23. Hyperphosphatemia in Hyp/klotho−/− mice was associated with increased renal expression of sodium/phosphate cotransporter 2a (NaPi2a) protein. Exogenous injection of bioactive parathyroid hormone 1-34 down-regulated renal expression of NaPi2a and consequently reduced serum levels of phosphate in Hyp/klotho−/− mice. Moreover, in contrast to the Hyp mice, the Hyp/klotho−/− mice showed significantly higher serum levels of 1,25-dihydroxyvitamin D and developed extensive calcification in soft tissues and vascular walls. Furthermore, compared with the Hyp mice, Hyp/klotho−/− mice were smaller in size, showed features of generalized tissue atrophy, and generally died by 15–20 wk of age. Our in vivo studies provide genetic evidence for a pathological role of increased FGF23 activities in regulating abnormal phosphate homeostasis in Hyp mice. Moreover, these results suggest that even when serum levels of FGF23 are significantly high, in the absence of klotho, FGF23 is unable to regulate systemic phosphate homeostasis. Our in vivo observations have significant clinical implications in diseases associated with increased FGF23 activity and suggest that the functions of FGF23 can be therapeutically modulated by manipulating the effects of klotho.—Nakatani, Y., Ohnishi, M., Razzaque, M. S. Inactivation of klotho function induces hyperphosphatemia even in presence of high serum fibroblast growth factor 23 levels in a genetically engineered hypophosphatemic (Hyp) mouse model.
机译:Hyp小鼠具有使磷酸调节基因失活的突变,该基因与X染色体的内肽酶(PHEX)同源。由于尿磷酸盐过多浪费,该突变与严重的低磷血症有关。 Hyp小鼠中的这种尿中磷酸盐的浪费与成纤维细胞生长因子(FGF)23的血清积累增加有关。我们想要确定Hyp小鼠中血清FGF23水平升高和伴随的低磷血症的生物学意义,并评估是否可以改变FGF23活性通过操纵klotho(FGF23信号转导的辅助因子)。我们生成了Hyp和klotho双突变小鼠(Hyp / klotho-/-)。 Hyp / klotho-/-double突变体中,Hyp小鼠的严重低磷血症可逆转为高磷血症,尽管事实是double突变体显示出FGF23的血清水平显着升高。 Hyp / klotho-/-小鼠中的高磷酸盐血症与钠/磷酸盐共转运蛋白2a(NaPi2a)蛋白的肾脏表达增加有关。生物活性甲状旁腺激素1-34的外源注射下调了NaPi2a的肾脏表达,因此降低了Hyp / klotho-/-小鼠的血清磷酸盐水平。此外,与Hyp小鼠相反,Hyp / klotho-/-小鼠血清中1,25-二羟基维生素D的含量明显更高,并且在软组织和血管壁中形成广泛的钙化。此外,与Hyp小鼠相比,Hyp / klotho-/-小鼠体型较小,显示出组织萎缩的特征,一般在15-20周龄时死亡。我们的体内研究为FGF23活性增加在调控Hyp小鼠体内异常磷酸稳态方面的病理作用提供了遗传学证据。而且,这些结果表明,即使当FGF23的血清水平显着高时,在没有klotho的情况下,FGF23也不能调节全身性磷酸盐稳态。我们的体内观察结果对与FGF23活性增加相关的疾病具有重要的临床意义,并建议可以通过控制klotho的作用来治疗性调节FGF23的功能。在基因工程的低磷酸盐血症(Hyp)小鼠模型中,即使在高血清成纤维细胞生长因子23水平存在的情况下,这种功能也会诱导高磷酸盐血症。

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