A New Human NHERF1 Mutation Decreases Renal Phosphate Transporter NPT2a Expression by a PTH-Independent Mechanism

被引:40
作者
Courbebaisse, Marie [1 ,2 ,3 ]
Leroy, Christine [2 ]
Bakouh, Naziha [2 ]
Salauen, Christine [2 ]
Beck, Laurent [2 ]
Grandchamp, Bernard [4 ]
Planelles, Gabrielle [2 ]
Hall, Randy A. [5 ]
Friedlander, Gerard [1 ,2 ,6 ]
Prie, Dominique [1 ,2 ,3 ]
机构
[1] Univ Paris 05, Fac Med, Paris, France
[2] INSERM U845, Res Ctr, Paris, France
[3] Hop Necker Enfants Malad, Serv Physiol Explorat Fonct, Paris, France
[4] Univ Paris 05, Hop Bichat Claude Bernard, Inst Federatif Rech 02, INSERM, Paris, France
[5] Emory Univ, Sch Med, Dept Pharmacol, Atlanta, GA 30322 USA
[6] Hop Europeen Georges Pompidou, Serv Physiol Explorat Fonct, Paris, France
关键词
PARATHYROID-HORMONE; PROXIMAL TUBULE; COTRANSPORTER; IIA; ISOFORMS; RECEPTOR; CALCIUM; BETA;
D O I
10.1371/journal.pone.0034764
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: The sodium-hydrogen exchanger regulatory factor 1 (NHERF1) binds to the main renal phosphate transporter NPT2a and to the parathyroid hormone (PTH) receptor. We have recently identified mutations in NHERF1 that decrease renal phosphate reabsorption by increasing PTH-induced cAMP production in the renal proximal tubule. Methods: We compared relevant parameters of phosphate homeostasis in a patient with a previously undescribed mutation in NHERF1 and in control subjects. We expressed the mutant NHERF1 protein in Xenopus Oocytes and in cultured cells to study its effects on phosphate transport and PTH-induced cAMP production. Results: We identified in a patient with inappropriate renal phosphate reabsorption a previously unidentified mutation (E68A) located in the PDZ1 domain of NHERF1. We report the consequences of this mutation on NHERF1 function. E68A mutation did not modify cAMP production in the patient. PTH-induced cAMP synthesis and PKC activity were not altered by E68A mutation in renal cells in culture. In contrast to wild-type NHERF1, expression of the E68A mutant in Xenopus oocytes and in human cells failed to increase phosphate transport. Pull down experiments showed that E68A mutant did not interact with NPT2a, which robustly interacted with wild type NHERF1 and previously identified mutants. Biotinylation studies revealed that E68A mutant was unable to increase cell surface expression of NPT2a. Conclusions: Our results indicate that the PDZ1 domain is critical for NHERF1-NPT2a interaction in humans and for the control of NPT2a expression at the plasma membrane. Thus we have identified a new mechanism of renal phosphate loss and shown that different mutations in NHERF1 can alter renal phosphate reabsorption via distinct mechanisms.
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