首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Targeted disruption of the mouse NHERF-1 gene promotes internalization of proximal tubule sodium-phosphate cotransporter type IIa and renal phosphate wasting
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Targeted disruption of the mouse NHERF-1 gene promotes internalization of proximal tubule sodium-phosphate cotransporter type IIa and renal phosphate wasting

机译:小鼠NHERF-1基因的靶向破坏可促进近端肾小管磷酸钠共转运蛋白IIa型的内在化和肾磷酸盐的浪费

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摘要

Na+/H+ exchanger regulatory factor (NHERF)-1 and NHERF-2, two structurally related protein adapters containing tandem PSD-95/Discs large/ZO-1 (PDZ) domains, were identified as essential factors for protein kinase A-mediated inhibition of the sodium-hydrogen exchanger, NHE3. NHERF-1 and NHERF-2 also bound other cellular targets including the sodium-phosphate cotransporter type IIa encoded by the NPT2 gene. Targeted disruption of the mouse NHERF-1 gene eliminated NHERF-1 expression in kidney and other tissues of the mutant mice without altering NHERF-2 levels in these tissues. NHERF-1 (+/−) and (−/−) male mice maintained normal blood electrolytes but showed increased urinary excretion of phosphate when compared with wild-type (+/+) animals. Although the overall levels of renal NHERF-1 targets, NHE3 and Npt2, were unchanged in the mutant mice, immunocytochemistry showed that the Npt2 protein was aberrantly localized at internal sites in the renal proximal tubule cells. The mislocalization of Npt2 paralleled a reduction in the transporter protein in renal brush–border membranes isolated from the mutant mice. In contrast, NHE3 was appropriately localized at the apical surface of proximal tubules in both wild-type and mutant mice. These data suggested that NHERF-1 played a unique role in the apical targeting and/or trafficking of Npt2 in the mammalian kidney, a function not shared by NHERF-2 or other renal PDZ proteins. Phosphate wasting seen in the NHERF-1(−/−) null mice provided a new experimental system for defining the role of PDZ adapters in the hormonal control of ion transport and renal disease.
机译:Na + / H + 交换调节因子(NHERF)-1和NHERF-2,这两个结构相关的蛋白质衔接子,包含串联PSD-95 / Discs large / ZO-1( PDZ)域被确定为蛋白激酶A介导的钠氢交换剂NHE3抑制的必需因子。 NHERF-1和NHERF-2还结合其他细胞靶标,包括由NPT2基因编码的磷酸钠共转运蛋白IIa型。小鼠NHERF-1基因的靶向破坏消除了突变小鼠肾脏和其他组织中NHERF-1的表达,而不会改变这些组织中NHERF-2的水平。与野生型(+ / +)动物相比,NHERF-1(+/-)和(-/-)雄性小鼠维持正常的血液电解质,但显示尿中磷酸盐的排泄增加。尽管在突变小鼠中肾脏NHERF-1靶标NHE3和Npt2的总体水平没有变化,但免疫细胞化学显示Npt2蛋白异常地位于肾脏近端小管细胞的内部部位。 Npt2的错误定位与从突变小鼠分离的肾刷-边界膜中转运蛋白的减少平行。相反,在野生型和突变型小鼠中,NHE3都适当地定位在近端小管的顶表面。这些数据表明,NHERF-1在哺乳动物肾脏中Npt2的根尖靶向和/或运输中起​​着独特的作用,而NHERF-2或其他肾脏PDZ蛋白没有这种功能。在NHERF-1(-/-)无效小鼠中看到的磷酸盐消耗为定义PDZ衔接子在激素控制离子转运和肾脏疾病中的作用提供了新的实验系统。

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