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Quantification of Breast Cancer Cell Invasiveness Using a Three-dimensional (3D) Model
Published on: June 11, 2014
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.
Abstract:
The generation of invasiveness in transformed cells represents an essential step of tumor progression. We have previously shown that MDCK epithelial cells, which are deprived of intracellular adhesion by the addition of anti-Arc-1/uvomorulin antibodies, become invasive for collagen gels and embryonal heart tissue (Behrens, J., M. M. Mareel, F. M. Van Roy, and W. Birchmeier. 1989. J. Cell Biol. 108: 2435-2447.). Here we examined whether invasiveness is also induced by scatter factor, which is known to dissociate epithelial cells (Stoker, M., E. Gherardi, M. Perryman, and J. Gray. 1987. Nature (Lond.). 327:239-242.). Scatter factor was purified to homogeneity from conditioned medium of human fibroblasts by heparin-Sepharose chromatography, followed by cation exchange chromatography, gel filtration, or preparative SDS gel electrophoresis. We found that scatter factor represents a 92,000 mol wt glycoprotein which, apparently, is converted by limited proteolysis into disulfide-linked 62,000 and 34/32,000 mol wt subunits. Reversed phase HPLC and sequence analysis of tryptic peptides confirmed the suggested molecular structure, and revealed further that scatter factor exhibits sequence similarities to hepatocyte growth factor and to plasminogen. Purified scatter factor in fact induces the invasiveness into collagen matrices of MDCK epithelial cells, and induces or promotes the invasiveness of a number of human carcinoma cell lines. Apparently, the effect on the human cells depends on their respective degree of differentiation, i.e., cell lines with a less pronounced epithelial phenotype were more susceptible to the factor. Scatter factor does not seem to influence synthesis, steady-state level, and phosphorylation of the cell adhesion molecule Arc-1/uvomorulin. Thus, scatter factor represents a clearly defined molecular species which induces, in vitro, the progression of epithelial cells to a more motile, i.e., invasive phenotype.
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.
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