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Updated: Jun 28, 2026

Cell Aggregation Assays to Evaluate the Binding of the Drosophila Notch with Trans-Ligands and its Inhibition by Cis-Ligands
Published on: January 2, 2018
Beta-catenin modulates the level and transcriptional activity of Notch1/NICD through its direct interaction
Yun Hye Jin1, Hangun Kim, Hyunkyung Ki
1College of Pharmacy and Research Institute of Drug Development, Chonnam National University, Gwangju 500-757, Republic of Korea.
Abstract:
Wnt and Notch1 signaling pathways play an important role in a variety of biological processes including embryonic induction, the polarity of cell division, cell fate, and cell growth. Although there is evidence that the two main signaling pathways can modulate each other, the precise mechanism is not completely understood. This report shows that beta-catenin can regulate the level and transcriptional activity of the Notch1 and Notch1 intracellular domain (NICD). The in vivo and in vitro results demonstrate that beta-catenin binds with Notch1 and NICD, for which its Armadillo repeat domain is essential. It was further demonstrated that beta-catenin could upregulate the level of Notch1 and NICD, possibly by competing the common ubiquitin-dependent degradation machinery. In addition, beta-catenin enhanced the transcriptional activity of NICD on the hairy and enhancer of split 1 (HES1) and CSL through its C-terminal transactivation domain. This effect of cooperative regulation by beta-catenin could also be observed in bone morphogenetic protein 2 (BMP2) induced osteogenic differentiation of C2C12 cells. beta-catenin coexpression with NICD enhanced the alkaline phosphatase (ALP) activity in C2C12 cells compared with either beta-catenin or NICD expression alone. Culturing C2C12 cells on Delta-1 coated dishes together with Wnt3-conditioned media induced noticeable increases in ALP staining, verifying that employed physiological levels of NICD and beta-catenin are sufficient to induce ALP activation. Furthermore, effects of beta-catenin on Notch1 were dramatically diminished by overexpressed LEF1. Overall, our data suggest that beta-catenin can act as a switching molecule between the classical TCF/LEF1 mediated pathway and NICD mediated pathway.
Insights
Beta-catenin regulates Wnt and Notch signaling by binding to Notch1 and its intracellular domain (NICD). This interaction enhances NICD
Area of Science:
- Cellular and Molecular Biology
- Developmental Biology
- Signal Transduction
Background:
- Wnt and Notch1 signaling pathways are crucial for embryonic development, cell fate, and growth.
- Cross-talk between Wnt and Notch1 pathways is known, but the underlying mechanisms require further elucidation.
Purpose of the Study:
- To investigate the regulatory role of beta-catenin in Notch1 signaling.
- To elucidate the molecular mechanisms by which beta-catenin influences Notch1 activity and cellular differentiation.
Main Methods:
- In vivo and in vitro binding assays to assess beta-catenin interaction with Notch1 and NICD.
- Western blotting and reporter assays to evaluate changes in protein levels and transcriptional activity.
- C2C12 cell differentiation assays, including alkaline phosphatase (ALP) activity measurements.
Main Results:
- Beta-catenin directly binds to Notch1 and NICD via its Armadillo repeat domain, stabilizing their levels.
- Beta-catenin enhances NICD's transcriptional activity on HES1 and CSL promoters.
- Coexpression of beta-catenin and NICD promotes BMP2-induced osteogenic differentiation in C2C12 cells, evidenced by increased ALP activity.
Conclusions:
- Beta-catenin acts as a key regulator of Notch1 signaling, potentially by modulating protein degradation pathways.
- Beta-catenin enhances NICD-mediated transcription and promotes osteogenic differentiation.
- Beta-catenin may function as a molecular switch integrating Wnt/TCF/LEF1 and Notch1 signaling pathways.
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