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Interaction of the EGF Receptor and the Hippo Pathway in the Diabetic Kidney
Jianchun Chen1, Raymond C Harris2
1Department of Veterans Affairs, Nashville, Tennessee; and Department of Medicine and Jian-chun.chen@vanderbilt.edu ray.harris@vanderbilt.edu.
Abstract:
Activation of the EGF receptor (EGFR) or the Hippo signaling pathway can control cell proliferation, apoptosis, and differentiation, and the dysregulation of these pathways can contribute to tumorigenesis. Previous studies showed that activation of EGFR signaling in renal epithelial cells can exacerbate diabetic kidney injury. Moreover, EGFR has been implicated in regulating the Hippo signaling pathway in Drosophila; thus, we examined this potential interaction in mammalian diabetic kidney disease. Yes-associated protein (YAP) is a transcriptional regulator regulated by the Hippo signaling pathway. We found YAP protein expression and phosphorylation were upregulated in diabetic mouse renal proximal tubule epithelial cells, which were inhibited in diabetic proximal tubule EGFR-knockout mice (EGFR(ptKO)) or administration of an EGFR tyrosine kinase inhibitor erlotinib. Furthermore, activation of an EGFR-PI3K-Akt-CREB signaling pathway mediated YAP gene expression and YAP nuclear translocation and interaction with the TEA domain (TEAD) transcription factor complex, which led to upregulated expression of two TEAD-dependent genes, the connective tissue growth factor and amphiregulin genes. In a renal proximal tubule cell line, either pharmacologic or genetic inhibition of EGFR, Akt, or CREB blunted YAP expression in response to high-glucose treatment. Additionally, knocking down YAP expression by specific siRNA inhibited cell proliferation in response to high glucose or exogenous EGF. Therefore, these results link the Hippo pathway to EGFR-mediated renal epithelial injury in diabetes.
Insights
Epidermal Growth Factor Receptor (EGFR) signaling exacerbates diabetic kidney injury by upregulating the Hippo pathway's YAP protein. Inhibiting EGFR or key downstream molecules like Akt and CREB blunts this effect, offering potential therapeutic targets.
Area of Science:
- Cell Biology
- Molecular Biology
- Nephrology
Background:
- Dysregulation of Epidermal Growth Factor Receptor (EGFR) and Hippo signaling pathways contributes to tumorigenesis and diabetic kidney injury.
- EGFR signaling in renal epithelial cells exacerbates diabetic kidney injury.
- EGFR influences the Hippo signaling pathway in Drosophila, suggesting a conserved interaction.
Purpose of the Study:
- To investigate the interaction between EGFR signaling and the Hippo pathway in mammalian diabetic kidney disease.
- To elucidate the molecular mechanisms linking EGFR activation to YAP regulation in diabetic nephropathy.
Main Methods:
- Examined YAP protein expression and phosphorylation in diabetic mouse renal proximal tubule epithelial cells.
- Utilized EGFR-knockout mice and EGFR tyrosine kinase inhibitors (erlotinib).
- Investigated the role of the EGFR-PI3K-Akt-CREB pathway and YAP-TEAD complex in regulating gene expression.
Main Results:
- YAP protein expression and phosphorylation were upregulated in diabetic kidney injury and inhibited by EGFR blockade.
- EGFR-PI3K-Akt-CREB signaling mediated YAP gene expression, nuclear translocation, and interaction with TEAD.
- Inhibition of EGFR, Akt, or CREB blunted YAP expression in high-glucose conditions.
- Knocking down YAP inhibited high-glucose or EGF-induced cell proliferation.
Conclusions:
- EGFR signaling activates the Hippo pathway component YAP in diabetic kidney injury.
- The EGFR-PI3K-Akt-CREB pathway is crucial for mediating YAP activation in response to high glucose.
- YAP plays a significant role in EGFR-mediated renal epithelial cell proliferation in diabetes.
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