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Parathyroid hormone treatment induces dissociation of type IIa Na+-P(i) cotransporter-Na+/H+ exchanger regulatory factor-1 complexes

机译:甲状旁腺激素治疗诱导IIa型Na + -P(i)共转运蛋白-Na + / H +交换调节因子1复合体的解离

摘要

The type IIa Na+-P(i) cotransporter (NaP(i)-IIa) and the Na+/H+ exchanger regulatory factor-1 (NHERF1) colocalize in the apical membrane of proximal tubular cells. Both proteins interact in vitro. Herein the interaction between NaP(i)-IIa and NHERF1 is further documented on the basis of coimmunoprecipitation and co-pull-down assays. NaP(i)-IIa is endocytosed and degraded in lysosomes upon parathyroid hormone (PTH) treatment. To investigate the effect of PTH on the NaP(i)-IIa-NHERF1 association, we first compared the localization of both proteins after PTH treatment. In mouse proximal tubules and OK cells, NaP(i)-IIa was removed from the apical membrane after hormonal treatment; however, NHERF1 remained at the membrane. Moreover, PTH treatment led to degradation of NaP(i)-IIa without changes in the amount of NHERF1. The effect of PTH on the NaP(i)-IIa-NHERF1 interaction was further studied using coimmunoprecipitation. PTH treatment reduced the amount of NaP(i)-IIa coimmunoprecipitated with NHERF antibodies. PTH-induced internalization of NaP(i)-IIa requires PKA and PKC; therefore, we next analyzed whether PTH induces changes in the phosphorylation state of either partner. NHERF1 was constitutively phosphorylated. Moreover, in mouse kidney slices, PTH induced an increase in NHERF1 phosphorylation; independent activation of PKA or PKC also resulted in increased phosphorylation of NHERF1 in kidney slices. However, NaP(i)-IIa was not phosphorylated either basally or after exposure to PTH. Our study supports an interaction between NHERF1 and NaP(i)-IIa on the basis of their brush-border membrane colocalization and in vitro coimmunoprecipitation/co-pull-down assays. Furthermore, PTH weakens this interaction as evidenced by different in situ and in vivo behavior. The PTH effect takes place in the presence of increased phosphorylation of NHERF1.
机译:IIa型Na + -P(i)共转运蛋白(NaP(i)-IIa)和Na + / H +交换调节因子-1(NHERF1)共定位在近端肾小管细胞的顶膜中。两种蛋白都在体外相互作用。在此,基于共免疫沉淀和共下拉试验进一步记录了NaP(i)-IIa和NHERF1之间的相互作用。 NaP(i)-IIa在甲状旁腺激素(PTH)治疗后被溶酶体吞噬并降解。为了研究PTH对NaP(i)-IIa-NHERF1缔合的影响,我们首先比较了PTH处理后两种蛋白质的定位。在小鼠近端小管和OK细胞中,激素治疗后从根尖膜中去除了NaP(i)-IIa。但是,NHERF1保留在膜上。此外,PTH处理导致NaP(i)-IIa降解,而NHERF1的量没有变化。使用共免疫沉淀技术进一步研究了PTH对NaP(i)-IIa-NHERF1相互作用的影响。 PTH处理可减少与NHERF抗体共免疫沉淀的NaP(i)-IIa的量。 PTH诱导的NaP(i)-IIa内在化需要PKA和PKC。因此,我们接下来分析了PTH是否诱导任何一个伴侣的磷酸化状态发生变化。 NHERF1被组成型磷酸化。此外,在小鼠肾脏切片中,PTH诱导了NHERF1磷酸化的增加。 PKA或PKC的独立激活也导致肾脏切片中NHERF1的磷酸化增加。但是,NaP(i)-IIa既不被基础磷酸化也不暴露于PTH后被磷酸化。我们的研究支持NHERF1和NaP(i)-IIa之间的相互作用,基于其刷膜共定位和体外共免疫沉淀/共下拉测定。此外,PTH减弱了这种相互作用,如不同的原位和体内行为所证明。 PTH效应在NHERF1磷酸化增加的情况下发生。

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