Secretory carrier membrane protein 2 regulates exocytic insertion of NKCC2 into the cell membrane

Nancy Zaarour1, Nadia Defontaine, Sylvie Demaretz

  • 1INSERM, Centre de Recherche des Cordeliers, UMRS 872, CNRS, ERL7226, 75006 Paris, France.

Insights

Secretory carrier membrane protein 2 (SCAMP2) interacts with the Na-K-2Cl co-transporter (NKCC2) in kidney cells. SCAMP2 reduces NKCC2 cell surface levels by hindering its exocytotic trafficking from recycling endosomes.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Cell Biology

Background:

  • The renal-specific Na-K-2Cl co-transporter, NKCC2, is crucial for salt balance and blood pressure regulation.
  • Mutations in NKCC2 cause type I Bartter syndrome, a severe kidney disease.
  • NKCC2 activity is tightly controlled by its trafficking to and from the plasma membrane, but its interacting partners are largely unknown.

Purpose of the Study:

  • To identify protein partners that regulate NKCC2 cell surface targeting.
  • To elucidate the mechanism by which identified partners affect NKCC2 trafficking and activity.

Main Methods:

  • Yeast two-hybrid screening of a kidney cDNA library to identify NKCC2 C-terminal binding partners.
  • Confocal microscopy and co-immunoprecipitation to confirm NKCC2-SCAMP2 interaction in renal cells.
  • Heterologous expression studies, co-immunolocalization, and sodium 2-mercaptoethane sulfonate cleavage assays to assess NKCC2 trafficking and activity.

Main Results:

  • Secretory carrier membrane protein 2 (SCAMP2) was identified as an NKCC2 binding partner.
  • SCAMP2 co-localized with NKCC2 in recycling endosomes and decreased its cell surface abundance and transport activity.
  • SCAMP2's effect on NKCC2 surface levels was attributed to reduced exocytotic trafficking, not altered endocytosis.
  • A specific mutation in SCAMP2 abolished its ability to down-regulate NKCC2 surface expression.

Conclusions:

  • SCAMP2 acts as a regulator of NKCC2 trafficking.
  • SCAMP2 interferes with NKCC2 exocytotic trafficking from recycling endosomes, limiting its cell surface presentation.
  • These findings reveal a novel mechanism controlling NKCC2 activity and offer insights into kidney disease pathogenesis.

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