A novel dephosphorylation-activated conductance in a mouse renal collecting duct cell line

S Laycock1, H C Taylor, C Haigh

  • 1Department of Biomedical Science, University of Sheffield, Sheffield, UK.

Insights

Researchers identified a novel TRPP2-related cation channel in mouse kidney cells that is activated by fluid flow and dephosphorylation. This finding offers new insights into autosomal dominant polycystic kidney disease (ADPKD) mechanisms.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Ion Channel Physiology

Background:

  • Autosomal dominant polycystic kidney disease (ADPKD) is a common inherited renal disorder characterized by cyst development and potential renal failure.
  • Mutations in PKD1 and PKD2 genes, encoding TRPP1 and TRPP2 proteins, are implicated in ADPKD.
  • TRPP1 and TRPP2 have been previously detected in renal collecting duct M8 cells.

Purpose of the Study:

  • To investigate the functional properties of cation currents in M8 cells.
  • To examine the impact of TRPP1 overexpression on these currents using a transgenic M7 cell model.

Main Methods:

  • Whole-cell patch-clamp electrophysiology was used to record cation currents in M8 and M7 cells.
  • Functional properties, including flow sensitivity, ion selectivity, and activation/inhibition mechanisms, were analyzed.
  • Specific inhibitors (gadolinium, okadaic acid) and antibodies targeting TRPP2 were employed.

Main Results:

  • M8 cells exhibited a low basal current that activated over time into a flow-sensitive current (I(Gd)).
  • This I(Gd) was cation-selective, Ca2+ permeable, and dependent on Ca2+ and dephosphorylation.
  • Okadaic acid inhibited I(Gd) activation, implicating protein phosphatase 2A. Overexpression of TRPP1 in M7 cells did not alter I(Gd).
  • I(Gd) was inhibited by an anti-TRPP2 antibody but displayed different selectivity, suggesting a TRPP2-like or TRPP2-containing channel.

Conclusions:

  • A novel dephosphorylation- and flow-activated TRPP2-related channel was functionally identified in mouse collecting duct cells.
  • This channel's properties differ from canonical TRPP2, suggesting a unique functional role or heteromeric assembly.
  • The findings provide new molecular insights into renal ion transport relevant to ADPKD pathogenesis.