Understanding renal phosphate handling: unfinished business

Author:

Lederer Eleanor

Abstract

Purpose of review The purpose of this review is to highlight the publications from the prior 12–18 months that have contributed significant advances in the field of renal phosphate handling. Recent findings The discoveries include new mechanisms for the trafficking and expression of the sodium phosphate cotransporters; direct link between phosphate uptake and intracellular metabolic pathways; interdependence between proximal tubule transporters; and the persistent renal expression of phosphate transporters in chronic kidney disease. Summary Discovery of new mechanisms for trafficking and regulation of expression of phosphate transporters suggest new targets for the therapy of disorders of phosphate homeostasis. Demonstration of stimulation of glycolysis by phosphate transported into a proximal tubule cell expands the scope of function for the type IIa sodium phosphate transporter from merely a mechanism to reclaim filtered phosphate to a regulator of cell metabolism. This observation opens the door to new therapies for preserving kidney function through alteration in transport. The evidence for persistence of active renal phosphate transport even with chronic kidney disease upends our assumptions of how expression of these transporters is regulated, suggests the possibility of alternative functions for the transporters, and raises the possibility of new therapies for phosphate retention.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Nephrology,Internal Medicine

Reference38 articles.

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4. Phosphate (Pi)-regulated heterodimerization of the high-affinity sodium-dependent Pi transporters PiT1/Pit-1 and PiT2/Slc20a2 underlies extracellular Pi sensing independently of Pi uptake;Bon;J Biol Chem,2018

5. Characteristics and therapeutic potential of sodium-dependent phosphate cotransporters in relation to idiopathic basal ganglia calcification;Inden;J Pharmacol Sci,2022

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