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The roles of Na/Pi-II transporters in phosphate metabolism.

机译:Na / Pi-II转运蛋白在磷酸盐代谢中的作用。

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摘要

The renal type II Na/Pi cotransporters, Na/Pi-IIa and Na/Pi-IIc, are expressed in the brush border membrane (BBM) of the renal proximal tubule cells. Because it has long been thought that Na/Pi-IIa alone can regulate the reabsorption of phosphate in the proximal renal tubules, Na/Pi-IIc has not been paid much attention by the renal research community. Recent studies, however, have identified Na/Pi-IIc mutations as the defective cause of hereditary hypophosphatemic rickets with hypercalciuria (HHRH). This finding indicates that Na/Pi-IIc has a rather important role in renal Pi reabsorption and bone mineralization, and that it may be a key determinant of plasma Pi concentrations in humans. Studies of Na/Pi-IIc mice indicate that Na/Pi-IIc is necessary for normal calcium homeostasis, but its role in the regulation of Pi metabolism and bone physiology may be different from that in HHRH patients. Of note, Na/Pi-IIc KO mice display abnormal vitamin D regulation without hypophosphatemia or hyperphosphaturia. Thus, Na/Pi-IIc may be involved in regulating renal vitamin D synthesis in the proximal tubular cells. The identification of proteins that interact with Na/Pi-IIc is an important area of future research. The physiologic roles of Na/Pi-IIa and Na/Pi-IIc require future elucidation.
机译:肾脏II型Na / Pi共转运蛋白Na / Pi-IIa和Na / Pi-IIc在肾近端小管细胞的刷状缘膜(BBM)中表达。由于长期以来人们一直认为,单独使用Na / Pi-IIa可以调节近端肾小管中磷酸盐的重吸收,因此肾脏研究界并未对Na / Pi-IIc给予太多关注。然而,最近的研究已将Na / Pi-IIc突变鉴定为遗传性低钙性病伴高钙尿症(HHRH)的缺陷原因。这一发现表明,Na / Pi-IIc在肾Pi重吸收和骨矿化中具有相当重要的作用,并且它可能是人体血浆Pi浓度的关键决定因素。 Na / Pi-IIc小鼠的研究表明,Na / Pi-IIc对正常的钙稳态是必需的,但其在Pi代谢和骨骼生理调节中的作用可能与HHRH患者不同。值得注意的是,Na / Pi-IIc KO小鼠显示出异常的维生素D调节,而没有低磷血症或高血尿症。因此,Na / Pi-IIc可能参与调节近端肾小管细胞中肾脏维生素D的合成。与Na / Pi-IIc相互作用的蛋白质的鉴定是未来研究的重要领域。 Na / Pi-IIa和Na / Pi-IIc的生理作用需要进一步阐明。

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