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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 >Na+ -phosphate cotransport in mouse distal convoluted tubule cells: evidence for Glvr-1 and Ram-1 gene expression.
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Na+ -phosphate cotransport in mouse distal convoluted tubule cells: evidence for Glvr-1 and Ram-1 gene expression.

机译:Na +-磷酸在小鼠远曲小管细胞中的共转运:Glvr-1和Ram-1基因表达的证据。

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摘要

While there is considerable evidence for phosphate (Pi) reabsorption in the distal tubule, Pi transport and its regulation have not been well characterized in this segment of the nephron. In the present study, we examined Na+-dependent Pi transport in immortalized mouse distal convoluted tubule (MDCT) cells. Pi uptake by MDCT cells is Na+-dependent and, under initial rate conditions, is inhibited by phosphonoformic acid (41 +/- 3% of control), a competitive inhibitor of Na+-Pi cotransport. The transport system has a high affinity for Pi (Km = 0.46 mM) and is stimulated by lowering the extracellular pH from 7.4 to 6.4 and inhibited by raising the pH from 7.4 to 8.4. Exposure to Pi-free medium for 21 h increased Na+-Pi cotransport from 2.1 to 5.5 nmol/mg of protein/5 minutes (p < 0.05) while parathyroid hormone, forskolin, and phorbol 12-myristate 13-acetate failed to alter Pi uptake in MDCT cells. Reverse transcriptase polymerase chain reaction of MDCT cell RNA provided evidence for the expression of the Npt1 but not the Npt2 Na+-Pi cotransporter gene. However, preincubation of MDCT cells with Npt1 antisense oligonucleotide led to only 20% inhibition of Na+-Pi cotransport, suggesting that other Na+-Pi cotransporters are operative in MDCT cells. Indeed, we showed, by ribonuclease protection assay, that MDCT cells express the ubiquitous cell surface receptors for gibbon ape leukemia virus (Glvr-1) and amphoteric murine retrovirus (Ram-1) that also function as Na+-Pi cotransporters. In summary, we demonstrate that the pH dependence and regulation of Na+-Pi cotransport in MDCT cells is distinct from that in the proximal tubule and suggest that different gene products mediate Na+-Pi cotransport in the proximal and distal segments of the nephron.
机译:尽管有大量证据表明远端小管中磷酸盐(Pi)会被重吸收,但在肾单位的这一部分,Pi的运输及其调控尚未得到很好的表征。在本研究中,我们检查了永生化的小鼠远曲小管(MDCT)细胞中Na +依赖的Pi转运。 MDCT细胞对Pi的吸收是Na +依赖性的,在初始速率条件下,膦酸钠甲酸(Na +-Pi共转运的竞争性抑制剂)会抑制膦酸甲酸(41 +/- 3%的对照)。转运系统对Pi具有很高的亲和力(Km = 0.46 mM),可通过将细胞外pH从7.4降低到6.4来刺激,并通过将pH从7.4升高到8.4来抑制。暴露于无Pi培养基21小时可使Na + -Pi共转运从2.1 / 5增加至5.5 nmol / mg蛋白质/ 5分钟(p <0.05),而甲状旁腺激素,毛喉素和佛波醇12-肉豆蔻酸酯13-乙酸酯不能改变Pi的吸收。在MDCT细胞中。 MDCT细胞RNA的逆转录聚合酶链反应为Npt1的表达提供了证据,但Npt2 Na + -Pi共转运蛋白基因却没有提供。但是,将MDCT细胞与Npt1反义寡核苷酸预孵育仅导致Na + -Pi共转运的20%抑制,这表明其他Na + -Pi共转运体在MDCT细胞中有效。确实,我们通过核糖核酸酶保护试验表明,MDCT细胞表达了长臂猿白血病病毒(Glvr-1)和两性鼠逆转录病毒(Ram-1)的无处不在的细胞表面受体,它们也起着Na + -Pi共转运蛋白的作用。总之,我们证明MDCT细胞中pH依赖性和Na + -Pi共转运与近端小管中pH依赖性和调控不同,并表明不同的基因产物介导肾单位近端和远端节段中Na + -Pi共转运。

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