Scatter factor: molecular characteristics and effect on the invasiveness of epithelial cells

K M Weidner1, J Behrens, J Vandekerckhove

  • 1Institut für Zellbiologie (Tumorforschung), Universitätsklinikum, Essen, Federal Republic of Germany.

Insights

Scatter factor, a glycoprotein, induces epithelial cells to become invasive, a key step in tumor progression. This factor promotes invasiveness in various carcinoma cell lines, particularly those with less epithelial characteristics.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cancer Research

Background:

  • Tumor progression involves the generation of invasiveness in transformed cells.
  • Previous studies showed that disrupting cell adhesion in MDCK cells induces invasiveness.
  • Scatter factor is known to dissociate epithelial cells.

Purpose of the Study:

  • To investigate if scatter factor induces invasiveness in epithelial cells.
  • To characterize the molecular properties of scatter factor.
  • To determine the effect of scatter factor on human carcinoma cell lines.

Main Methods:

  • Purification of scatter factor from human fibroblast conditioned medium using heparin-Sepharose, cation exchange, and gel filtration chromatography.
  • Analysis of scatter factor's molecular structure via SDS-PAGE, HPLC, and tryptic peptide sequencing.
  • Assessing the invasiveness of MDCK cells and human carcinoma cell lines in collagen matrices upon scatter factor treatment.

Main Results:

  • Scatter factor is a 92,000 mol wt glycoprotein, proteolytically cleaved into 62,000 and 34/32,000 mol wt subunits.
  • Scatter factor exhibits sequence similarities to hepatocyte growth factor and plasminogen.
  • Purified scatter factor induced invasiveness in MDCK cells and promoted invasiveness in human carcinoma cell lines, with susceptibility correlating to the degree of differentiation.

Conclusions:

  • Scatter factor is a distinct molecular entity that induces an invasive phenotype in epithelial cells in vitro.
  • The invasiveness induced by scatter factor is independent of alterations in the cell adhesion molecule Arc-1/uvomorulin.
  • Scatter factor represents a significant factor in epithelial cell motility and tumor progression.