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.

Cancer Research
|August 4, 2004
PubMed

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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