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May 15, 20260 citationsOpen Access

Low-Salt Diet Induces Claudin-3 Expression and Drives Adaptive Changes in Collecting Duct of Claudin-3-Deficient Mice.

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ASAli SassiACAlexandra ChassotSJSara Jellali

Key Points

  • This study aims to investigate how a low-sodium diet affects claudin-3 expression and paracellular sodium permeability in the collecting duct.
  • Wild-type and claudin-3 knockout male mice were fed low and normal sodium diets for 7 days.
  • Tight junction protein expression was analyzed by immunoblotting and immunofluorescence.
  • Functional effects were evaluated in cultured principal cells using chamber recordings after overexpression or silencing of claudin-3.
  • Low-sodium diet increases claudin-3 expression in mouse kidneys.
  • Claudin-3 overexpression reduced paracellular permeability, while silencing increased it.
  • Claudin-3 knockout mice upregulated other claudins and sodium channels to compensate under low-salt conditions.

Abstract

Aim Renal sodium reabsorption occurs through both transcellular and paracellular pathways. Tight junction proteins play a key role in mediating paracellular transport. The collecting duct is critical for the fine tuning of sodium balance and is highly responsive to changes in dietary salt intake. This study aimed to determine whether a low-sodium diet modulates paracellular sodium permeability by regulating the expression or localization of claudin-3, a major tight junction protein in the collecting duct.Methods Wild-type and claudin-3 knockout male mice were fed low (0.01%) or normal (0.18%) sodium diets for 7 days, with or without treatment with spironolactone, a mineralocorticoid receptor antagonist. The expression of tight junction proteins was analyzed by immunoblotting and immunofluorescence. Functional effects of claudin-3 on ion permeability were evaluated in cultured mouse collecting duct principal cells using chamber recordings after claudin-3 overexpression or gene silencing.Results Low-sodium diet increases claudin-3 expression in mouse kidneys. In cultured cells, aldosterone enhanced claudin-3 abundance and its plasma membrane localization. Claudin-3 overexpression reduced, while its silencing increased paracellular permeability to sodium and chloride. Claudin-3 knockout mice on a low-sodium diet compensated by upregulating epithelial sodium channel subunits, claudin-4, claudin-8, and claudin-10. This adaptive response persisted under mineralocorticoid receptor blockade.Conclusions Our findings demonstrate that aldosterone strengthens the paracellular sodium barrier in the collecting duct by inducing claudin-3. In the absence of claudin-3, compensatory regulation of other claudins and sodium transporters preserves sodium homeostasis under low-salt conditions, thus revealing adaptive mechanisms in renal sodium handling.

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Cite This Study

Sassi et al. (2026) studied this question.

synapsesocial.com/papers/6a06b914e7dec685947aba7bhttps://doi.org/10.48620/97675
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Low‐Salt Diet Induces Claudin‐3 Expression and Drives Adaptive Changes in Collecting Duct of Claudin‐3‐Deficient Mice2026
  2. 2Control of renal calcium permeability via a tight junctional claudin switch2025
  3. 3Absence of claudin-3 does not alter intestinal absorption of phosphate in mice2024
  4. 4Paracellular transport along the nephron in physiology and pathophysiology2026 · 1 citations
  5. 5Novel mechanisms for NaCl reabsorption in the collecting duct2011 · 22 citations