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首页> 外文期刊>Endocrinology >Activation of a non-cAMP/PKA signaling pathway downstream of the PTH/PTHrP receptor is essential for a sustained hypophosphatemic response to PTH infusion in male mice
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Activation of a non-cAMP/PKA signaling pathway downstream of the PTH/PTHrP receptor is essential for a sustained hypophosphatemic response to PTH infusion in male mice

机译:PTH / PTHrP受体下游的非cAMP / PKA信号通路的激活对于雄性小鼠对PTH输注的持续低磷反应至关重要

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摘要

PTH increases urinary Pi excretion by reducing expression of two renal cotransporters [NaPi-IIa (Npt2a) and NaPi-IIc (Npt2c)]. In contrast to acute transporter regulation that is cAMP/protein kinase A dependent, long-term effects require phospholipase C (PLC) signaling by the PTH/PTHrP receptor (PPR). To determine whether the latter pathway regulates Pi through Npt2a and/or Npt2c, wild-type mice (Wt) and animals expressing a mutant PPR incapable of PLC activation (DD) were tested in the absence of one (Npt2a-/- or Npt2c-/-) or both phosphate transporters (2a/2c-dko). PTH infusion for 8 days caused a rapid and persistent decrease in serum Pi in Wt mice, whereas serumPi inDDmice fell only transiently for the first 2 days. Consistent with these findings, fractional Pi excretion index was increased initially in both animals, but this increase persisted only when the PPR Wt was present. The hypophosphatemic response to PTH infusion was impaired only slightly in PPR Wt/Npt2c-/-or DD/Npt2c-/-mice. Despite lower baselines,PTHinfusion in PPR Wt/Npt2a-/- mice decreased serum Pi further, an effect that was attenuated in DD/Npt2a-/- mice. Continuous PTH had no effect on serum Pi in 2a/2c-dko mice. PTH administration increased serum 1,25 dihydroxyvitamin D3 levels in Wt and DD mice and increased levels above the elevated baseline with ablation of either but not of both transporters. Continuous PTH elevated serum fibroblast growth factor 23 and blood Ca2+ equivalently in all groups of mice. Our data indicate that PLC signaling at the PPR contributes to the long-term effect of PTH on Pi homeostasis but not to the regulation of 1,25 dihydroxyvitamin D3, fibroblast growth factor 23, or blood Ca2+.
机译:PTH通过减少两种肾脏共转运蛋白[NaPi-IIa(Npt2a)和NaPi-IIc(Npt2c)]的表达来增加尿Pi排泄。与依赖cAMP /蛋白激酶A的急性转运蛋白调节相反,长期作用需要PTH / PTHrP受体(PPR)传递磷脂酶C(PLC)信号。为了确定后一种途径是否通过Npt2a和/或Npt2c调节Pi,在没有一个小鼠(Npt2a-/-或Npt2c-)的情况下测试了野生型小鼠(Wt)和表达无法进行PLC激活的突变PPR的动物(DD)。 /-)或两个磷酸盐转运蛋白(2a / 2c-dko)。 PTH输注8天导致Wt小鼠血清Pi持续快速降低,而血清Pi inDDmice仅在头2天短暂下降。与这些发现一致,两只动物的Pi排泄分数分数最初都增加了,但是这种增加只有在存在PPR Wt时才持续存在。在PPR Wt / Npt2c-/-或DD / Npt2c-/-小鼠中,对PTH输注的低磷酸盐反应仅轻微受损。尽管基线较低,但在PPR Wt / Npt2a-/-小鼠中进行PTH输注会进一步降低血清Pi,这一作用在DD / Npt2a-/-小鼠中有所减弱。连续PTH对2a / 2c-dko小鼠的血清Pi无影响。 PTH给药可增加Wt和DD小鼠的血清1,25二羟基维生素D3水平,并通过消融这两种转运蛋白(但不是同时去除这两种转运蛋白)使血红蛋白水平升高至高于升高的基线。在所有小鼠组中,连续PTH均等地升高了血清成纤维细胞生长因子23和血液Ca2 +的水平。我们的数据表明,PPR处的PLC信号有助于PTH对Pi稳态的长期影响,但对1,25二羟基维生素D3,成纤维细胞生长因子23或血液Ca2 +的调节无作用。

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