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Updated: Aug 23, 2026

Induction and Analysis of Epithelial to Mesenchymal Transition
Published on: August 27, 2013
Truncated RON tyrosine kinase drives tumor cell progression and abrogates cell-cell adhesion through E-cadherin
Chiara Bardella1, Barbara Costa, Piera Maggiora
1Laboratory of Cancer Genetics, Institute for Cancer Research and Treatment, University of Torino Medical School, 10060 Candiolo, Turin, Italy.
Abstract:
RON is a tyrosine kinase receptor that triggers scattering of normal cells and invasive growth of cancer cells on ligand binding. We identified a short RON mRNA, which is expressed in human lung, ovary, tissues of the gastrointestinal tract, and also in several human cancers, including ovarian carcinomas and cell lines from pancreatic carcinomas and leukemias. This transcript encodes a truncated protein (short-form RON; sf-RON), lacking most of the RON receptor extracellular domain but retaining the whole transmembrane and intracellular domains. Sf-RON shows strong intrinsic tyrosine kinase activity and is constitutively phosphorylated. Epithelial cells transduced with sf-RON display an aggressive phenotype; they shift to a nonepithelial morphology, are unable to form aggregates, grow faster in monolayer cultures, show anchorage-independent growth, and become motile. We show that in these cells, E-cadherin expression is lost through a dominant transcriptional repression pathway likely mediated by the transcriptional factor SLUG. Altogether, these data show that expression of a naturally occurring, constitutively active truncated RON kinase results in loss of epithelial phenotype and aggressive behavior and, thus, it might contribute to tumor progression.
Insights
A short-form RON (sf-RON) protein, lacking the extracellular domain, drives aggressive cancer cell behavior. This constitutively active kinase promotes nonepithelial morphology and motility, potentially contributing to tumor progression.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- The RON receptor tyrosine kinase regulates cell scattering and invasive growth.
- Aberrant RON signaling is implicated in various human cancers.
Purpose of the Study:
- To investigate the function of a newly identified short-form RON (sf-RON) transcript.
- To determine the role of sf-RON in promoting aggressive cellular phenotypes and tumor progression.
Main Methods:
- Identification and characterization of the sf-RON transcript and protein.
- Transduction of epithelial cells with sf-RON.
- Analysis of cellular morphology, growth characteristics, and E-cadherin expression.
Main Results:
- sf-RON is a constitutively active, truncated RON kinase expressed in normal tissues and cancers.
- Epithelial cells expressing sf-RON exhibit a nonepithelial morphology, increased proliferation, motility, and anchorage-independent growth.
- sf-RON expression leads to loss of E-cadherin via transcriptional repression mediated by SLUG.
Conclusions:
- The naturally occurring sf-RON kinase promotes a loss of epithelial phenotype and aggressive behavior.
- sf-RON may contribute to tumor progression by inducing an invasive and metastatic phenotype.
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