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Updated: Feb 27, 2026

Induction and Analysis of Epithelial to Mesenchymal Transition
Published on: August 27, 2013
Cten promotes epithelial-mesenchymal transition through the post-transcriptional stabilization of Snail
Hannah Thorpe1, Abdulaziz Asiri1, Maham Akhlaq1
1School of Medicine, University of Nottingham, Nottingham, UK.
Abstract:
Cten promotes cell migration however the knowledge of underlying signalling pathways is sparse. We have shown that Cten downregulates E-cadherin, a feature of epithelial to mesenchymal transition (EMT). This prompted us to investigate whether Cten further contributed to EMT processes to regulate cell motility. The regulation of Snail by Cten was investigated following overexpression, knockdown (by RNA-interference) or knockout of Cten in HCT116, Caco-2 and SW620 colorectal cancer (CRC) cell lines. Subsequently, the cycloheximide (CHX) pulse chase assay was used to investigate changes in Snail protein stability and the functional relevance of Cten-Snail signalling was investigated. Snail was identified as a downstream target of Cten signalling using multiple approaches of Cten expression manipulation. Furthermore, this activity was mediated through the SH2 domain of Cten. The CHX assay confirmed that Cten was regulating Snail at a post transcriptional level and this was through the prevention of Snail degradation. Cell migration, invasion and colony formation efficiency were increased following forced expression of GFP-Cten but subsequently lost when Snail was knocked down, demonstrating a functional Cten-Snail signalling axis. In conclusion, we have described a novel Cten-Snail signaling pathway that contributes to cell motility in CRC, mediated by the stabilization of Snail protein. This finding potentially furthers the understanding of EMT regulatory networks in cancer metastasis.
Insights
Cten stabilizes Snail protein, enhancing colorectal cancer cell motility and invasion. This novel Cten-Snail pathway offers new insights into epithelial to mesenchymal transition (EMT) regulation in cancer metastasis.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Cten protein promotes cell migration, but its signaling pathways remain largely unknown.
- Cten downregulates E-cadherin, a key event in epithelial to mesenchymal transition (EMT).
Purpose of the Study:
- To investigate the role of Cten in regulating cell motility through EMT processes.
- To elucidate the downstream signaling targets of Cten, specifically focusing on Snail protein.
Main Methods:
- Manipulation of Cten expression (overexpression, knockdown, knockout) in colorectal cancer cell lines (HCT116, Caco-2, SW620).
- Cycloheximide (CHX) pulse-chase assay to assess Snail protein stability.
- Functional assays including cell migration, invasion, and colony formation assays.
Main Results:
- Cten directly regulates Snail protein at a post-transcriptional level by preventing its degradation.
- Cten's SH2 domain mediates the stabilization of Snail protein.
- Forced Cten expression increased cell migration, invasion, and colony formation, effects abolished by Snail knockdown.
Conclusions:
- A novel Cten-Snail signaling pathway is identified, contributing to colorectal cancer cell motility.
- This pathway is mediated by Cten-induced stabilization of Snail protein.
- Findings enhance understanding of EMT regulatory networks in cancer metastasis.
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