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Published on: June 17, 2014
Targeted β-catenin ubiquitination and degradation by multifunctional stapled peptides
Xiaofeng Wang1, Liuli Dong2, Jiongjia Cheng1
1Key Laboratory of Advanced Functional Materials of Nanjing, Nanjing Xiaozhuang University, Nanjing, China.
Abstract:
Aberrant activation of the Wnt signaling pathway has been identified in numerous types of cancer. One common feature of oncogenic Wnt regulation involves an increase in the cellular levels of β-catenin due to interference with its constitutive ubiquitin-dependent degradation. Targeting β-catenin has therefore emerged as an appealing approach for the treatment of Wnt-dependent cancers. Here, we report a strategy that employs multifunctional stapled peptides to recruit an E3 ubiquitin ligase to β-catenin, thereby rescuing β-catenin degradation by hijacking the endogenous ubiquitin-proteasome pathway. Specifically, we designed, synthesized, and evaluated a panel of multifunctional stapled peptides that have a β-catenin binding moiety (StAx-35) covalently linked to a second stapled peptide moiety (SAH-p53-8), which is capable to interact with the E3 ubiquitin ligase MDM2. We found that in vitro these multifunctional peptides can recruit the MDM2 protein to β-catenin and induce poly-ubiquitination on β-catenin. In cellulo, treatment of the human colorectal cancer cell line SW480 with the multifunctional stapled peptides showed dose-dependent degradation of endogenous β-catenin levels. In addition, a luciferase reporter assay showed that the multifunctional stapled peptides can suppress β-catenin-mediated gene expression via the Wnt signaling pathway. Therefore, these multifunctional stapled peptides provide a unique research tool for examining the Wnt signaling pathway by targeted knockdown of β-catenin at the protein level, and may serve as leads for potential drug candidates in the treatment of Wnt-dependent cancers.
Insights
Researchers developed novel stapled peptides to target and degrade β-catenin, a key protein in Wnt signaling cancers. This approach hijacks the cell
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Aberrant Wnt signaling pathway activation is common in many cancers.
- Increased β-catenin levels, due to impaired degradation, drive oncogenesis.
- Targeting β-catenin is a promising strategy for Wnt-dependent cancers.
Purpose of the Study:
- To develop a novel therapeutic strategy targeting β-catenin degradation.
- To utilize multifunctional stapled peptides to recruit E3 ubiquitin ligase to β-catenin.
- To investigate the potential of these peptides as research tools and drug candidates.
Main Methods:
- Design and synthesis of multifunctional stapled peptides linking β-catenin and MDM2 binding moieties.
- In vitro assessment of peptide-induced β-catenin poly-ubiquitination.
- In cellulo evaluation of peptide efficacy in colorectal cancer cells (SW480).
- Luciferase reporter assays to measure Wnt signaling pathway activity.
Main Results:
- Multifunctional stapled peptides successfully recruited MDM2 to β-catenin in vitro.
- Peptides induced poly-ubiquitination and subsequent degradation of β-catenin in cancer cells.
- Dose-dependent reduction in endogenous β-catenin levels was observed.
- Suppression of β-catenin-mediated gene expression via the Wnt pathway was confirmed.
Conclusions:
- Multifunctional stapled peptides effectively degrade β-catenin by hijacking the ubiquitin-proteasome system.
- These peptides serve as valuable tools for studying the Wnt pathway.
- The developed peptides show potential as therapeutic leads for Wnt-dependent cancers.
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