ATP release into ADPKD cysts via pannexin-1/P2X7 channels decreases ENaC activity

Sergey N Arkhipov1, Tengis S Pavlov1

  • 1Division of Hypertension and Vascular Research, Henry Ford Health System, Detroit, MI, USA.

Insights

In autosomal dominant polycystic kidney disease (ADPKD), abnormal pannexin-1 (Panx1) and P2X7 expression in cysts increases ATP release. This elevated ATP disrupts epithelial transport, promoting cyst growth.

Area of Science:

  • Nephrology
  • Cell Biology
  • Molecular Medicine

Background:

  • Polycystic kidney disease (PKD) involves genetic predisposition and downstream processes driving cyst growth.
  • High adenosine triphosphate (ATP) content within cysts is a poorly understood feature of PKD.
  • The roles of purinergic signaling and ATP release in PKD epithelial transport remain unclear.

Purpose of the Study:

  • To investigate the distribution and role of pannexin-1 (Panx1) and P2X7 in autosomal dominant PKD (ADPKD).
  • To determine the impact of Panx1 and P2X7 on ATP release in kidney collecting ducts.
  • To explore the consequences of abnormal purinergic signaling on epithelial transport in ADPKD.

Main Methods:

  • Examined Panx1 and P2X7 protein abundance in kidneys of Pkd1RC/RC mice (an ADPKD model).
  • Measured luminal ATP accumulation in M1 renal collecting duct cell monolayers.
  • Utilized probenecid (Panx1 blocker) and alpha-beta-meATP (P2X receptor agonist).
  • Performed single channel patch clamp analysis on polarized M1 cells.

Main Results:

  • Panx1 and P2X7 were significantly increased in the cyst lining cells of ADPKD mouse kidneys.
  • Probenecid treatment inhibited ATP release in M1 cell monolayers, confirming Panx1's role.
  • Apical stimulation of P2X receptors reduced ENaC activity in M1 cells.
  • Cooperation between Panx1 and P2X7 elevated luminal ATP release in cysts.

Conclusions:

  • ADPKD progression is associated with aberrant overexpression of PANX1 and P2RX7 in cyst lining cells.
  • The pannexin-1/P2X7 complex facilitates excessive ATP release into the cyst lumen.
  • Elevated luminal ATP levels act as a pathogenic factor, promoting cystogenesis by impairing ENaC-mediated reabsorption.

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