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NaPi-IIa interacting proteins and regulation of renal reabsorption of phosphate

机译:NaPi-IIa相互作用蛋白与肾脏对磷酸盐重吸收的调节

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Control of phosphate (Pi) homeostasis is essential for many biologic functions and inappropriate low levels of Pi in plasma have been suggested to associate with several pathological states, including renal stone formation and stone recurrence. Pi homeostasis is achieved mainly by adjusting the renal reabsorption of Pi to the body’s requirements. This task is performed to a major extent by the Na/Pi cotransporter NaPi-IIa that is specifically expressed in the brush border membrane of renal proximal tubules. While the presence of tight junctions in epithelial cells prevents the diffusion and mixing of the apical and basolateral components, the location of a protein within a particular membrane subdomain (i.e., the presence of NaPi-IIa at the tip of the apical microvilli) often requires its association with scaffolding elements which directly or indirectly connect the protein with the underlying cellular cytoskeleton. NaPi-IIa interacts with the four members of the Na+/H+ exchanger regulatory factor family as well as with the GABAA-receptor associated protein . Here we will discuss the most relevant findings regarding the role of these proteins on the expression and regulation of the cotransporter, as well as the impact that their absence has in Pi homeostasis.
机译:磷酸盐(P i )稳态的控制对于许多生物学功能至关重要,血浆中P i 的过低水平与多种病理状态有关,包括肾结石形成和结石复发。 P i 体内平衡主要是通过调节P i 的肾脏重吸收达到人体需要而实现的。 Na / Pi共转运蛋白NaPi-IIa主要在肾脏近端小管的刷状缘膜中表达,因此在很大程度上完成了这项任务。虽然上皮细胞中紧密连接的存在阻止了顶端和基底外侧成分的扩散和混合,但通常需要蛋白质在特定膜亚结构域内的位置(即,顶端微绒毛末端存在NaPi-IIa)它与直接或间接将蛋白质与潜在细胞骨架相连的支架元件的关联。 NaPi-IIa与Na + / H + 交换调节因子家族的四个成员以及与相关的GABA A -受体相互作用蛋白质。在这里,我们将讨论有关这些蛋白质在共转运蛋白表达和调控中的作用的最相关发现,以及它们的缺失对P i 体内稳态的影响。

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