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Updated: May 13, 2026

The Soft Agar Colony Formation Assay
Published on: October 27, 2014
Protein kinase C delta negatively modulates canonical Wnt pathway and cell proliferation in colon tumor cell lines
José G Hernández-Maqueda1, Luis Bernardo Luna-Ulloa, Paula Santoyo-Ramos
1Department of Biochemistry, Faculty of Medicine, Universidad Nacional Autónoma de México (UNAM), Mexico City, Mexico.
Abstract:
The tumor suppressor Adenomatous Polyposis coli (APC) gene is mutated or lost in most colon cancers. Alterations in Protein kinase C (PKC) isozyme expression and aberrant regulation also comprise early events in intestinal carcinomas. Here we show that PKCδ expression levels are decreased in colon tumor cell lines with respect to non-malignant cells. Reciprocal co-immunoprecipitation and immunofluorescence studies revealed that PKCδ interacts specifically with both full-length (from non-malignant cells) and truncated APC protein (from cancerous cells) at the cytoplasm and at the cell nucleus. Selective inhibition of PKCδ in cancer SW480 cells, which do not possess a functional β-catenin destruction complex, did not affect β-catenin-mediated transcriptional activity. However, in human colon carcinoma RKO cells, which have a normal β-catenin destruction complex, negatively affected β-catenin-mediated transcriptional activity, cell proliferation, and the expression of Wnt target genes C-MYC and CYCLIN D1. These negative effects were confirmed by siRNA-mediated knockdown of PKCδ and by the expression of a dominant negative form of PKCδ in RKO cells. Remarkably, the PKCδ stably depleted cells exhibited augmented tumorigenic activity in grafted mice. We show that PKCδ functions in a mechanism that involves regulation of β-catenin degradation, because PKCδ inhibition induces β-catenin stabilization at the cytoplasm and its nuclear presence at the C-MYC enhancer even without Wnt3a stimulation. In addition, expression of a dominant form of PKCδ diminished APC phosphorylation in intact cells, suggesting that PKCδ may modulate canonical Wnt activation negatively through APC phosphorylation.
Insights
Protein kinase C delta (PKCδ) suppresses colon cancer by regulating β-catenin. Reduced PKCδ levels promote tumor growth and Wnt target gene activation, indicating its tumor-suppressive role.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Adenomatous Polyposis coli (APC) gene mutations are common in colon cancer.
- Altered Protein kinase C (PKC) expression is an early event in intestinal carcinomas.
Purpose of the Study:
- To investigate the role of PKCδ in colon cancer.
- To determine the interaction of PKCδ with APC and its effect on β-catenin signaling.
Main Methods:
- Co-immunoprecipitation and immunofluorescence to study protein interactions.
- Inhibition of PKCδ using chemical inhibitors and siRNA.
- Assessment of β-catenin transcriptional activity, cell proliferation, and Wnt target gene expression.
- Tumorigenicity assays in grafted mice.
Main Results:
- PKCδ expression is decreased in colon tumor cells.
- PKCδ interacts with both full-length and truncated APC.
- PKCδ inhibition in RKO cells (with functional β-catenin destruction complex) reduced β-catenin activity, proliferation, and Wnt target gene expression (C-MYC, CYCLIN D1).
- PKCδ depletion increased tumorigenic activity in mice.
- PKCδ inhibition led to β-catenin stabilization and nuclear presence.
- PKCδ may negatively modulate Wnt signaling via APC phosphorylation.
Conclusions:
- PKCδ acts as a tumor suppressor in colon cancer.
- PKCδ regulates β-catenin degradation, impacting Wnt/β-catenin pathway.
- Targeting PKCδ could be a potential therapeutic strategy for colon cancer.
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