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Published on: January 7, 2013
Increased expression of the pro-apoptotic ATP-sensitive P2X7 receptor in experimental and human glomerulonephritis
Clare M Turner1, Frederick W K Tam, Ping-Chin Lai
1Epithelial Transport and Cell Biology Group, Department of Physiology, University College London (Hampstead Campus), Rowland Hill Street, London NW3 2PF, UK. c.turner@medsch.ucl.ac.uk
Background:
The involvement of IL-1beta and other pro-inflammatory cytokines in most forms of glomerulonephritis is now well established. The P2X(7) receptor, an ATP-sensitive P2X receptor, functions not only as a non-selective cation channel, but it is also involved in the rapid processing and release of IL-1beta, apoptosis and necrotic cell death. Therefore, we wanted to investigate if expression of this receptor is altered in the glomeruli of rodent models of glomerulonephritis.
Methods:
P2X(7) receptor protein expression was investigated using immunohistochemistry, and apoptosis was assessed using the TUNEL assay and caspase-3 immunostaining. Real-time PCR with gene-specific primers was used to detect P2X(7), IL-1beta, p53, bax and bcl-2 mRNA expression.
Results:
Although the levels of the P2X(7) receptor protein in mouse kidney are normally very low, or undetectable, we detected an increase in glomerular expression of this receptor and an increase in glomerular apoptotic cells in a mouse model of accelerated nephrotoxic nephritis. We also observed increased glomerular and tubular expression of the P2X(7) receptor protein in renal biopsy tissue of patients with autoimmune-related glomerulonephritis. Furthermore, P2X(7) receptor mRNA increased in the kidneys of a rat model of proliferative glomerulonephritis and this coincided with the onset of proteinuria. We also observed increased mRNA expression of Il-1beta and the pro-apoptotic markers p53 and bax, but not of anti-apoptotic bcl-2.
Conclusion:
Although there is an association between expression of the pro-inflammatory and pro-apoptotic P2X(7) receptor and glomerulonephritis in these rodent models, and in at least one form of human glomerulonephritis, the underlying relationship and its functional significance remain to be explored.
Insights
Glomerulonephritis is linked to increased expression of the pro-inflammatory P2X(7) receptor and apoptosis. This study investigated P2X(7) receptor alterations in rodent models and human glomerulonephritis, revealing a significant association.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Glomerulonephritis involves pro-inflammatory cytokines like IL-1beta.
- The P2X(7) receptor (ATP-sensitive P2X receptor) mediates IL-1beta release, apoptosis, and cell death.
- Investigating P2X(7) receptor expression in glomerulonephritis is crucial.
Purpose of the Study:
- To investigate alterations in P2X(7) receptor expression in the glomeruli of rodent models of glomerulonephritis.
- To assess the correlation between P2X(7) receptor expression and apoptotic markers in glomerulonephritis.
Main Methods:
- Immunohistochemistry for P2X(7) receptor protein.
- TUNEL assay and caspase-3 immunostaining for apoptosis.
- Real-time PCR for P2X(7), IL-1beta, p53, bax, and bcl-2 mRNA expression.
Main Results:
- Increased glomerular P2X(7) receptor and apoptotic cells in a mouse nephritis model.
- Elevated P2X(7) receptor protein in human autoimmune glomerulonephritis biopsies.
- Upregulated P2X(7) receptor, IL-1beta, p53, and bax mRNA in a rat glomerulonephritis model.
Conclusions:
- An association exists between P2X(7) receptor expression and glomerulonephritis in rodent models and human disease.
- The pro-inflammatory and pro-apoptotic P2X(7) receptor is linked to glomerulonephritis.
- Further research is needed to elucidate the relationship and functional significance of P2X(7) receptor in glomerulonephritis.
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