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A variant of ASIC2 mediates sodium retention in nephrotic syndrome
Marc Fila, Ali Sassi, Gaëlle Brideau, Lydie Cheval, Luciana Morla, Pascal Houillier, Christine Walter, Michel Gennaoui, Laure Collignon, Mathilde Keck, Gabrielle Planelles, Naziha Bakouh, Michel Peuchmaur, Georges Deschênes, Ignacio Anegon, Séverine Remy, Bruno Vogt, Gilles Crambert, Alain Doucet
Marc Fila, Ali Sassi, Gaëlle Brideau, Lydie Cheval, Luciana Morla, Pascal Houillier, Christine Walter, Michel Gennaoui, Laure Collignon, Mathilde Keck, Gabrielle Planelles, Naziha Bakouh, Michel Peuchmaur, Georges Deschênes, Ignacio Anegon, Séverine Remy, Bruno Vogt, Gilles Crambert, Alain Doucet
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Research Article Nephrology

A variant of ASIC2 mediates sodium retention in nephrotic syndrome

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Abstract

Idiopathic nephrotic syndrome (INS) is characterized by proteinuria and renal sodium retention leading to edema. This sodium retention is usually attributed to epithelial sodium channel (ENaC) activation after plasma aldosterone increase. However, most nephrotic patients show normal aldosterone levels. Using a corticosteroid-clamped (CC) rat model of INS (CC-PAN), we showed that the observed electrogenic and amiloride-sensitive Na retention could not be attributed to ENaC. We then identified a truncated variant of acid-sensing ion channel 2b (ASIC2b) that induced sustained acid-stimulated sodium currents when coexpressed with ASIC2a. Interestingly, CC-PAN nephrotic ASIC2b-null rats did not develop sodium retention. We finally showed that the expression of the truncated ASIC2b in the kidney was dependent on the presence of albumin in the tubule lumen and activation of ERK in renal cells. Finally, the presence of ASIC2 mRNA was also detected in kidney biopsies from patients with INS but not in any of the patients with other renal diseases. We have therefore identified a variant of ASIC2b responsible for the renal Na retention in the pathological context of INS.

Authors

Marc Fila, Ali Sassi, Gaëlle Brideau, Lydie Cheval, Luciana Morla, Pascal Houillier, Christine Walter, Michel Gennaoui, Laure Collignon, Mathilde Keck, Gabrielle Planelles, Naziha Bakouh, Michel Peuchmaur, Georges Deschênes, Ignacio Anegon, Séverine Remy, Bruno Vogt, Gilles Crambert, Alain Doucet

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Figure 5

Functional expression of ASIC2 in X. laevis oocyte.

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Functional expression of ASIC2 in X. laevis oocyte.
(A) ASIC2b coexpress...
(A) ASIC2b coexpression attenuates ASIC2a desensitization. Original traces of whole-cell current (holding potential = –70 mV) in oocytes expressing ASIC2a alone or with ASIC2b, or t-ASIC2b, as indicated below the traces. Inward currents were induced by a rapid extracellular acidification from pH 7.4 to pH 4.0 (indicated by the horizontal bar). (B) Mean transient-induced (peak) and residual-induced (plateau) currents (corrected by currents recorded in control oocytes) in oocytes expressing ASIC2a alone (black bars) or coexpressing ASIC2b (red) or t-ASIC2b (blue). (C) Acid-induced plateau currents (normalized to maximal value achieved at pH 4) at different extracellular pH; colors as above. (D) Effect of amiloride: acid-induced (pH 4) plateau currents (normalized to the value measured in the absence of inhibitor) in the presence of 100 μM amiloride. Data are shown as mean ± SEM (each value represents an oocyte, n is shown in italic in each figure). Comparison between groups was performed by variance analysis (1-way ANOVA) followed by post hoc multiple comparison Tukey’s test. P < 0.05. ASIC2, acid-sensing ion channel; t-ASIC2b, truncated variant of ASIC2b.

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