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Nitric oxide donors induce apoptosis in glomerular mesangial cells, epithelial cells and endothelial cells
1Department of Pharmacology, Biozentrum, University of Basel, Switzerland.
Abstract:
Renal mesangial cells exposed to inflammatory cytokines produce high concentrations of nitric oxide (NO) which may exert cytotoxic actions. We report here that glomerular mesangial cells, endothelial cells and epithelial cells in culture are themselves targets for NO and undergo apoptotic cell death upon exposure to high concentrations of NO. NO generated from different NO-releasing compounds as well as NO-saturated solution induce apoptosis in all three cell types as demonstrated by internucleosomal DNA fragmentation, an enrichment of cytosolic DNA/histone complexes, an increasing number of cellular 3'-OH-fragmented DNA ends and typical nuclear chromatin condensation. Induction of apoptosis was found to be dependent on protein synthesis and is preceded by expression of the tumour suppressor gene product p53 in mesangial cells. Induction of inducible NO synthase in mesangial cells by interleukin-1 beta leads to excessive formation of NO by the cells as measured by nitrite production. However, there was no evidence for apoptotic changes in mesangial cells triggered by endogenously produced NO. Co-cultures of glomerular endothelial or epithelial cells with interleukin-1 beta-activated mesangial cells expressing inducible NO synthase do not show apoptotic alterations in endothelial or epithelial cells. Moreover, preincubation of mesangial cells with interleukin-1 beta protects the cells from apoptosis induced by subsequent addition of exogenous NO thus suggesting that interleukin-1 beta not only triggers the expression of inducible NO synthase and massive NO formation but simultaneously stimulates a protecting principle in the cells. In summary, these results suggest that exogenous NO can induce apoptosis in all three types of intrinsic glomerular cells. However, whether endogenously produced NO can fulfil this function critically depends on a balance between a yet to be defined protective mechanism and inducible NO synthase expression in mesangial cells in response to interleukin-1 beta and eventually other inflammatory cytokines.
Insights
High concentrations of nitric oxide (NO) induce apoptosis in glomerular cells. However, endogenously produced NO
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Inflammatory cytokines stimulate renal mesangial cells to produce nitric oxide (NO).
- High NO concentrations may have cytotoxic effects on kidney cells.
Purpose of the Study:
- To investigate the effects of nitric oxide (NO) on glomerular mesangial, endothelial, and epithelial cells.
- To determine if endogenously produced NO can induce apoptosis in these cells.
Main Methods:
- Exposure of cultured glomerular cells to NO-releasing compounds and NO-saturated solutions.
- Assessment of apoptosis using DNA fragmentation, DNA/histone complexes, DNA ends, and chromatin condensation.
- Analysis of protein synthesis, p53 expression, and inducible nitric oxide synthase (iNOS) activity.
- Co-culture experiments and preincubation with interleukin-1 beta.
Main Results:
- Exogenous NO induced apoptosis in mesangial, endothelial, and epithelial cells.
- Apoptosis induction was protein synthesis-dependent and preceded by p53 expression in mesangial cells.
- Endogenously produced NO by interleukin-1 beta-activated mesangial cells did not induce apoptosis in co-cultured cells.
- Interleukin-1 beta preincubation protected mesangial cells from exogenous NO-induced apoptosis.
Conclusions:
- Exogenous nitric oxide (NO) induces apoptosis in intrinsic glomerular cells.
- The role of endogenously produced NO in apoptosis is dependent on a balance between protective mechanisms and iNOS expression.
- Interleukin-1 beta exhibits both pro-apoptotic (via iNOS) and anti-apoptotic effects on glomerular cells.