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.
Abstract:
Genetic predisposition is necessary for polycystic kidney disease (PKD) initiation, although there are other, incompletely identified downstream processes that are required for cyst growth. Their characterization may provide a unique opportunity for clinical interventions. One of the poorly studied phenomena in PKD is high ATP content in cysts. Unfortunately, neither origins of uncontrolled ATP release, nor consequences of abnormal purinergic signaling in relation to epithelial transport are well explored in the polycystic kidney. We tested the distribution of pannexin-1 (Panx1) and P2X7, two proteins potentially involved in ATP release, in the kidneys of the Pkd1RC/RC mice, a model of autosomal dominant PKD (ADPKD). Abundances of both proteins were abnormally increased in the cyst lining cells compared to non-dilated collecting ducts. To establish if pannexin-1 contributes to ATP release in the collecting ducts (CD), we measured luminal accumulation of ATP in M1 cell renal CD monolayers, and found that treatment with probenecid, a Panx1 blocker, prevents ATP release. Single channel patch clamp analysis of polarized M1 cells revealed that apical stimulation of P2X receptors with αβ-MeATP acutely reduces ENaC activity. We conclude that in ADPKD progression, an abnormal hyperexpression of both PANX1 and P2RX7 occurs in the cyst lining epithelial cells. High abundance of both proteins is not typical for non-dilated CDs but, when it happens in cysts, pannexin1/P2X7 cooperation elevates ATP release into the luminal space. High ATP level is a pathogenic factor facilitating cystogenesis by reducing ENaC-mediated reabsorption from the lumen.
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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