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Published on: October 27, 2014
PKG inhibits TCF signaling in colon cancer cells by blocking beta-catenin expression and activating FOXO4
I-K Kwon1, R Wang, M Thangaraju
1Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta, GA, USA.
Abstract:
Activation of cGMP-dependent protein kinase (PKG) has anti-tumor effects in colon cancer cells but the mechanisms are not fully understood. This study has examined the regulation of beta-catenin/TCF signaling, as this pathway has been highlighted as central to the anti-tumor effects of PKG. We show that PKG activation in SW620 cells results in reduced beta-catenin expression and a dramatic inhibition of TCF-dependent transcription. PKG did not affect protein stability, nor did it increase phosphorylation of the amino-terminal Ser33/37/Thr41 residues that are known to target beta-catenin for degradation. However, we found that PKG potently inhibited transcription from a luciferase reporter driven by the human CTNNB1 promoter, and this corresponded to reduced beta-catenin mRNA levels. Although PKG was able to inhibit transcription from both the CTNNB1 and TCF reporters, the effect on protein levels was less consistent. Ectopic PKG had a marginal effect on beta-catenin protein levels in SW480 and HCT116 but was able to inhibit TCF-reporter activity by over 80%. Investigation of alternative mechanisms revealed that cJun-N-terminal kinase (JNK) activation was required for the PKG-dependent regulation of TCF activity. PKG activation caused beta-catenin to bind to FOXO4 in colon cancer cells, and this required JNK. Activation of PKG was also found to increase the nuclear content of FOXO4 and increase the expression of the FOXO target genes MnSOD and catalase. FOXO4 activation was required for the inhibition of TCF activity as FOXO4-specific short-interfering RNA completely blocked the inhibitory effect of PKG. These data illustrate a dual-inhibitory effect of PKG on TCF activity in colon cancer cells that involves reduced expression of beta-catenin at the transcriptional level, and also beta-catenin sequestration by FOXO4 activation.
Insights
cGMP-dependent protein kinase (PKG) inhibits colon cancer growth by reducing beta-catenin expression and activity. PKG activation also leads to beta-catenin sequestration by FOXO4, revealing a dual mechanism against tumor progression.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- cGMP-dependent protein kinase (PKG) exhibits anti-tumor effects in colon cancer.
- The beta-catenin/TCF signaling pathway is crucial for colon cancer progression and is implicated in PKG's anti-tumor activity.
Purpose of the Study:
- To elucidate the mechanisms by which PKG activation impacts beta-catenin/TCF signaling in colon cancer cells.
- To investigate the role of c-Jun-N-terminal kinase (JNK) and FOXO4 in PKG-mediated regulation of this pathway.
Main Methods:
- Utilized SW620, SW480, and HCT116 colon cancer cell lines.
- Assessed beta-catenin expression, TCF-dependent transcription, and CTNNB1 promoter activity via reporter assays.
- Investigated protein-protein interactions and cellular localization using techniques like co-immunoprecipitation and Western blotting.
- Employed short-interfering RNA (siRNA) to examine the functional role of FOXO4.
Main Results:
- PKG activation reduced beta-catenin mRNA and protein levels, inhibiting TCF-dependent transcription.
- PKG did not affect beta-catenin protein stability or known degradation-targeting phosphorylation sites.
- PKG-induced inhibition of TCF activity required JNK activation and led to beta-catenin binding with FOXO4.
- PKG increased nuclear FOXO4 content and expression of FOXO target genes (MnSOD, catalase).
- FOXO4 activation was essential for PKG's inhibitory effect on TCF activity.
Conclusions:
- PKG exerts a dual inhibitory effect on TCF activity in colon cancer.
- This involves transcriptional downregulation of beta-catenin and sequestration of beta-catenin by activated FOXO4.
- The findings highlight a novel mechanism of PKG's anti-cancer action, involving the JNK/FOXO4 axis.
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