Key result
In primary cultures of renal proximal tubular cells, p38 mediates EGF receptor activation after oxidant injury, and the EGF receptor signaling pathway plays a critical role in dedifferentiation.
The study demonstrates that p38 kinase-mediated transactivation of the EGF receptor is essential for renal epithelial cell dedifferentiation following oxidant injury.
Hypothesis-generating for p38-EGF targeting in renal repair; should not yet change clinical AKI management.
Renal proximal tubular cell (RPTC) dedifferentiation is thought to be a prerequisite for regenerative proliferation and migration after renal injury. However, the specific mediators and the mechanisms that regulate RPTC dedifferentiation have not been elucidated. Because epidermal growth factor (EGF) receptor activity is required for recovery from acute renal failure, we examined the role of the EGF receptor in dedifferentiation and the mechanisms of EGF receptor transactivation in primary cultures of RPTCs after oxidant injury. Exposure of confluent RPTCs to H2O2 resulted in 40% cell death, and surviving RPTCs acquired a dedifferentiated phenotype (e.g. elongated morphology and vimetin expression). The EGF receptor, p38, Src, and MKK3 were activated after oxidant injury and inhibition of the EGF receptor or p38 with specific inhibitors (AG1478 and SB203580, respectively) blocked RPTC dedifferentiation. Treatment with SB203580 or adenoviral overexpression of dominant negative p38alpha or its upstream activator, MKK3, inhibited EGF receptor phosphorylation induced by oxidant injury, whereas AG1478 had no effect on p38 phosphorylation. Inhibition of Src with 4-amino-5-(4-methylphenyl)-7-(t-butyl)pyrazolo[3,4-d]-pyrimidine (PP1) blocked MKK3 and p38 activation, and inhibition of MKK3 blocked p38 activation. In addition, inactivation of Src, MKK3, p38, or the EGF receptor blocked tyrosine phosphorylation of beta-catenin, a key signaling intermediate that is involved in the epithelial-mesenchymal transition and vimentin expression. These results reveal that p38 mediates EGF receptor activation after oxidant injury; that Src activates MMK3, which, in turn, activates p38; and that the EGF receptor signaling pathway plays a critical role in RPTC dedifferentiation.
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Zhuang et al. (2005) studied Renal injury. Inhibitors of EGF receptor, p38, Src, and MKK3 (AG1478, SB203580, PP1) or adenoviral overexpression was evaluated on RPTC dedifferentiation and EGF receptor transactivation. In primary cultures of renal proximal tubular cells, p38 mediates EGF receptor activation after oxidant injury, and the EGF receptor signaling pathway plays a critical role in dedifferentiation.
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