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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >A Phex Mutation in a Murine Model of X-Linked Hypophosphatemia Alters Phosphate Responsiveness of Bone Cells
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A Phex Mutation in a Murine Model of X-Linked Hypophosphatemia Alters Phosphate Responsiveness of Bone Cells

机译:X链接的低磷酸盐血症的小鼠模型中的Phex突变改变骨细胞的磷酸盐反应性。

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Mutations in the PHEX gene cause X-linked hypophosphatemia (XLH). Hypophosphatemia in XLH results from increased circulating levels of a phosphaturic hormone, fibroblast growth factor 23 (FGF23), which inhibits renal phosphate reabsorption and 1,25-dihydroxyvitamin D (calcitriol) synthesis. The current standard therapy for XLH - high-dose phosphate and calcitriol-further increases FGF23 concentrations, suggesting that patients with XLH may have an altered response to extracellular phosphate. To test for the presence of abnormal phosphate responsiveness, we compared serum biochemistries and femoral Fgf23 mRNA expression between wild-type mice, murine models of XLH (Phex~(K496X)) and hyperphosphatemic tumoral calcinosis {Galnt3~(-/-)), and Galnt3/Phex double-mutant mice. Phex mutant mice had not only increased Fgf23 expression but also reduced proteolytic cleavage of intact Fgf23 protein, resulting in markedly elevated intact Fgf23 levels and consequent hypophosphatemia. In contrast, despite markedly increased Fgf23 expression, Galnt3 knockout mice had significantly high proteolytic cleavage of Fgf23 protein, leading to low intact Fgf23 concentrations and hyperpho-sphatemia. Galnt3/Phex double-mutant mice had an intermediate biochemical phenotype between wild-type and Phex mutant mice, including slightly elevated intact Fgf23 concentrations with milder hypophosphatemia. Despite the hypophosphatemia, double-mutant mice attempted to reduce serum phosphate back to the level of Phex mutant mice by upregulating Fgf23 expression as much as 24-fold higher than Phex mutant mice. These data suggest that Phex mutations alter the responsiveness of bone cells to extracellular phosphate concentrations and may create a lower set point for "normal" phosphate levels.
机译:PHEX基因中的突变会导致X连锁性低磷血症(XLH)。 XLH中的低磷酸盐血症是由循环饱和水平的磷酸激素,成纤维细胞生长因子23(FGF23)引起的,该因子抑制肾磷酸盐的重吸收和1,25-二羟基维生素D(骨化三醇)的合成。当前针对XLH的标准疗法-高剂量磷酸盐和骨化三醇进一步增加了FGF23的浓度,这提示XLH患者对细胞外磷酸盐的反应可能发生了改变。为了测试是否存在异常的磷酸盐反应性,我们比较了野生型小鼠,XLH(Phex〜(K496X))小鼠模型和高磷酸盐血症性肿瘤煅烧(Galnt3〜(-/-))之间的血清生物化学和股骨Fgf23 mRNA表达,和Galnt3 / Phex双突变小鼠。 Phex突变小鼠不仅增加了Fgf23的表达,而且减少了完整Fgf23蛋白的蛋白水解切割,从而导致完整Fgf23水平显着升高,从而导致低磷血症。相反,尽管Fgf23表达明显增加,但敲除Galnt3的小鼠Fgf23蛋白的蛋白水解裂解明显高,导致完整的Fgf23浓度低和高磷血症。 Galnt3 / Phex双突变小鼠在野生型和Phex突变小鼠之间具有中等的生化表型,包括完整的Fgf23浓度略有升高,而低磷血症。尽管存在低磷血症,但双突变小鼠仍试图通过上调Fgf23表达,使其比Phex突变小鼠高24倍,从而将血清磷酸盐降低到Phex突变小鼠的水平。这些数据表明,Phex突变改变了骨细胞对细胞外磷酸盐浓度的响应能力,并可能为“正常”磷酸盐水平产生较低的设定点。

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