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Acute kidney injury induces dramatic p21 upregulation via a novel, glucocorticoid-activated, pathway
Richard A Zager1,2, Ali C M Johnson1
1Fred Hutchinson Cancer Research Center , Seattle, Washington.
Abstract:
The cyclin kinase inhibitor p21 is acutely upregulated during acute kidney injury (AKI) and exerts cytoprotective effects. A proposed mechanism is oxidant stress-induced activation of p53, the dominant p21 transcription factor. Glycerol-induced rhabdomyolysis induces profound renal oxidant stress. Hence, we studied this AKI model to determine whether p53 activation corresponds with p21 gene induction and/or whether alternative mechanism(s) might be involved. CD-1 mice were subjected to glycerol-induced AKI. After 4 or 18 h, plasma, urinary, and renal cortical p21 protein and mRNA levels were assessed. Renal p53 activation was gauged by measurement of both total and activated (Ser15-phosphorylated) p53 and p53 mRNA levels. Glycerol evoked acute, progressive increases in renal cortical p21 mRNA and protein levels. Corresponding plasma (~25-fold) and urinary (~75-fold) p21 elevations were also observed. Renal cortical ratio of total to phosphorylated (Ser15) p53 rose three- to fourfold. However, the p53 inhibitor pifithrin-α failed to block glycerol-induced p21 gene induction, suggesting that an alternative p21 activator might also be at play. To this end, it was established that glycerol-induced AKI 1) dramatically increased plasma (~5-fold) and urinary (~75-fold) cortisol levels, 2) the glucocorticoid receptor antagonist mifepristone blocked glycerol-induced p21 mRNA and protein accumulation, and 3) dexamethasone or cortisol injections markedly increased p21 protein and mRNA in both normal and glycerol-treated mice, although no discernible p53 protein or mRNA increases were observed. We conclude that AKI-induced "systemic stress" markedly increases plasma and urinary cortisol, which can then activate renal p21 gene expression, at least in part, via a glucocorticoid receptor-dependent signaling pathway. Discernible renal cortical p53 increases are not required for this dexamethasone-mediated p21 response.
Insights
Acute kidney injury (AKI) upregulates the protective cyclin-dependent kinase inhibitor p21. Systemic stress during AKI increases cortisol, activating renal p21 expression via glucocorticoid receptors, independent of p53.
Area of Science:
- Nephrology
- Molecular Biology
- Endocrinology
Background:
- Acute kidney injury (AKI) involves significant renal oxidant stress.
- The cyclin-dependent kinase inhibitor p21 is upregulated during AKI and offers cytoprotection.
- p53 is considered the primary transcription factor for p21, activated by oxidant stress.
Purpose of the Study:
- To investigate the mechanism of p21 gene induction during glycerol-induced AKI.
- To determine if p53 activation correlates with p21 induction in this AKI model.
- To explore alternative pathways for p21 regulation in AKI.
Main Methods:
- Glycerol-induced AKI model in CD-1 mice.
- Assessment of p21 and p53 (total, phosphorylated, mRNA) levels in plasma, urine, and renal cortex.
- Inhibition studies using p53 inhibitor pifithrin-α and glucocorticoid receptor antagonist mifepristone.
- Hormone level analysis (cortisol) and effects of dexamethasone/cortisol administration.
Main Results:
- Glycerol-induced AKI led to increased renal p21 mRNA and protein, with elevated plasma and urinary p21 levels.
- While p53 activation markers increased, pifithrin-α did not inhibit glycerol-induced p21 induction.
- AKI significantly elevated plasma and urinary cortisol; mifepristone blocked p21 accumulation, and cortisol/dexamethasone increased p21 independently of p53.
Conclusions:
- AKI-induced systemic stress elevates cortisol levels.
- Cortisol activates renal p21 gene expression through a glucocorticoid receptor-dependent pathway.
- p53 activation is not essential for this cortisol-mediated p21 induction during AKI.
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