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Updated: Sep 1, 2025

A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
PAR-Induced Harnessing of EZH2 to β-Catenin: Implications for Colorectal Cancer
Shoshana Sedley1, Jeetendra Kumar Nag1, Tatyana Rudina1
1Sharett Institute of Oncology, Hadassah-Hebrew University Medical Center, Jerusalem 91120, Israel.
Abstract:
G-protein-coupled receptors (GPCRs) are involved in a wide array of physiological and disease functions, yet knowledge of their role in colon cancer stem cell maintenance is still lacking. In addition, the molecular mechanisms underlying GPCR-induced post-translational signaling regulation are poorly understood. Here, we find that protease-activated receptor 4 (PAR4) unexpectedly acts as a potent oncogene, inducing β-catenin stability and transcriptional activity. Both PAR4 and PAR2 are able to drive the association of methyltransferase EZH2 with β-catenin, culminating in β-catenin methylation. This methylation on a lysine residue at the N-terminal portion of β-catenin suppresses the ubiquitination of β-catenin, thereby promoting PAR-induced β-catenin stability and transcriptional activity. Indeed, EZH2 is found to be directly correlated with high PAR4-driven tumors, and is abundantly expressed in large tumors, whereas very little to almost none is expressed in small tumors. A truncated form of β-catenin, ∆N133β-catenin, devoid of lysine, as well as serine/threonine residues, exhibits low levels of β-catenin and a markedly reduced transcriptional activity following PAR4 activation, in contrast to wt β-catenin. Our study demonstrates the importance of β-catenin lysine methylation in terms of its sustained expression and function. Taken together, we reveal that PAR-induced post-transcriptional regulation of β-catenin is centrally involved in colon cancer.
Insights
Protease-activated receptor 4 (PAR4) acts as an oncogene in colon cancer by stabilizing beta-catenin. This involves EZH2-mediated methylation, preventing beta-catenin degradation and promoting tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- G-protein-coupled receptors (GPCRs) have diverse roles, but their function in colon cancer stem cell maintenance is unclear.
- The molecular mechanisms of GPCR-mediated post-translational signaling require further elucidation.
Purpose of the Study:
- To investigate the role of protease-activated receptor 4 (PAR4) in colon cancer stem cell maintenance.
- To elucidate the molecular mechanisms of GPCR-induced post-translational regulation of beta-catenin.
Main Methods:
- Investigated PAR4 and PAR2 signaling pathways.
- Assessed the interaction between EZH2 and beta-catenin.
- Analyzed beta-catenin methylation and ubiquitination.
- Utilized a truncated beta-catenin mutant (∆N133β-catenin) to study the role of lysine residues.
Main Results:
- PAR4 acts as an oncogene, enhancing beta-catenin stability and transcriptional activity.
- PAR4 and PAR2 recruit EZH2 to beta-catenin, leading to lysine methylation.
- Methylation of beta-catenin suppresses its ubiquitination, promoting stability.
- EZH2 expression correlates with PAR4-driven tumors and tumor size.
- ∆N133β-catenin shows reduced stability and activity, highlighting the importance of lysine methylation.
Conclusions:
- Beta-catenin lysine methylation is crucial for its sustained expression and function in colon cancer.
- PAR-induced post-transcriptional regulation of beta-catenin is a key mechanism in colon cancer progression.
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