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Published on: October 27, 2020
Crosstalk between protein kinase C α and transforming growth factor β signaling mediated by Runx2 in intestinal
Xinyue Li1, Navneet Kaur1, Mustafa Albahrani1
1Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska, USA.
Abstract:
Tight coordination of growth regulatory signaling is required for intestinal epithelial homeostasis. Protein kinase C α (PKCα) and transforming growth factor β (TGFβ) are negative regulators of proliferation with tumor suppressor properties in the intestine. Here, we identify novel crosstalk between PKCα and TGFβ signaling. RNA-Seq analysis of nontransformed intestinal crypt-like cells and colorectal cancer cells identified TGFβ receptor 1 (TGFβR1) as a target of PKCα signaling. RT-PCR and immunoblot analysis confirmed that PKCα positively regulates TGFβR1 mRNA and protein expression in these cells. Effects on TGFβR1 were dependent on Ras-extracellular signal-regulated kinase 1/2 (ERK) signaling. Nascent RNA and promoter-reporter analysis indicated that PKCα induces TGFβR1 transcription, and Runx2 was identified as an essential mediator of the effect. PKCα promoted ERK-mediated activating phosphorylation of Runx2, which preceded transcriptional activation of the TGFβR1 gene and induction of Runx2 expression. Thus, we have identified a novel PKCα→ERK→Runx2→TGFβR1 signaling axis. In further support of a link between PKCα and TGFβ signaling, PKCα knockdown reduced the ability of TGFβ to induce SMAD2 phosphorylation and cell cycle arrest, and inhibition of TGFβR1 decreased PKCα-induced upregulation of p21Cip1 and p27Kip1 in intestinal cells. The physiological relevance of these findings is also supported by The Cancer Genome Atlas data showing correlation between PKCα, Runx2, and TGFβR1 mRNA expression in human colorectal cancer. PKCα also regulated TGFβR1 in endometrial cancer cells, and PKCα, Runx2, and TGFβR1 expression correlates in uterine tumors, indicating that crosstalk between PKCα and TGFβ signaling may be a common mechanism in diverse epithelial tissues.
Insights
Protein kinase C alpha (PKCα) signaling activates transforming growth factor beta 1 (TGFβ1) receptor expression via ERK and Runx2, impacting intestinal epithelial homeostasis and cancer. This crosstalk is vital for tumor suppression.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Intestinal epithelial homeostasis relies on coordinated growth signaling.
- Protein kinase C alpha (PKCα) and transforming growth factor beta (TGFβ) are key negative regulators of intestinal proliferation and possess tumor suppressor functions.
Purpose of the Study:
- To elucidate the novel crosstalk between PKCα and TGFβ signaling pathways in intestinal epithelial cells.
- To identify the molecular mechanisms underlying this interaction and its role in epithelial homeostasis and cancer.
Main Methods:
- RNA-sequencing (RNA-Seq) to identify TGFβ receptor 1 (TGFβR1) as a PKCα target.
- RT-PCR and immunoblot analysis to confirm gene and protein expression.
- Nascent RNA and promoter-reporter assays to investigate transcriptional regulation.
- Analysis of The Cancer Genome Atlas (TCGA) data for clinical relevance.
Main Results:
- PKCα positively regulates TGFβR1 expression through Ras-extracellular signal-regulated kinase (ERK) signaling.
- PKCα induces TGFβR1 transcription via ERK-mediated phosphorylation of Runx2, establishing a PKCα→ERK→Runx2→TGFβR1 axis.
- PKCα knockdown impairs TGFβ-induced SMAD2 phosphorylation and cell cycle arrest.
- Inhibition of TGFβR1 reduces PKCα-induced p21Cip1 and p27Kip1 upregulation.
- Correlations between PKCα, Runx2, and TGFβR1 mRNA expression are observed in human colorectal and uterine tumors.
Conclusions:
- A novel signaling axis (PKCα→ERK→Runx2→TGFβR1) is identified, linking PKCα and TGFβ pathways.
- This crosstalk plays a significant role in regulating intestinal epithelial cell proliferation and tumor suppression.
- The findings suggest that PKCα-TGFβ signaling crosstalk is a conserved mechanism in various epithelial tissues, with implications for cancer therapy.
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