Biologic effects of heregulin/neu differentiation factor on normal and malignant human breast and ovarian epithelial
Z Aguilar1, R W Akita, R S Finn
1Division of Hematology and Oncology, Department of Medicine, UCLA School of Medicine, Los Angeles, California, CA 90095 USA.
Abstract:
The heregulins are a family of ligands with ability to induce phosphorylation of the p185HER-2/neu receptor. Various investigators have reported a variety of responses of mouse and human breast and ovarian cells to this family of ligands including growth stimulation, growth inhibition, apoptosis and induction of differentiation in cells expressing the HER-2/neu receptor. Some of the disparity in the literature has been attributed to variations in the cell lines studied, ligand dose applied, methodologies utilized or model system evaluated (i.e. in vitro or in vivo). To evaluate the effects of heregulin on normal and malignant human breast and ovarian epithelial cells expressing known levels of the HER-2/neu receptor, this report presents the use of several different assays, performed both in vitro and in vivo, in vitro proliferation assays, direct cell counts, clonogenicity under anchorage-dependent and anchorage-independent conditions, as well as the in vivo effects of heregulin on human cells growing in nude mice to address heregulin activity. Using a total of five different biologic assays in nine different cell lines, across two different epithelia and over a one log heregulin dose range, we obtained results that clearly indicate a growth-stimulatory role for this ligand in human breast and ovarian epithelial cells. We find no evidence that heregulin has any growth-inhibitory effects in human epithelial cells. We also quantitated the amount of each member of the type I receptor tyrosine kinase family (RTK I, i.e. HER-1, HER-2, HER-3 and HER-4) in the cell lines employed and correlated this to their respective heregulin responses. These data demonstrate that HER-2/neu overexpression itself affects the expression of other RTK I members and that cells expressing the highest levels of HER-2/neu have the greatest response to HRG.
Insights
Heregulins stimulate growth in human breast and ovarian cells expressing the HER-2/neu receptor. This study found no evidence of growth inhibition by heregulins in these cell types.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Heregulins are ligands that trigger phosphorylation of the p185HER-2/neu receptor.
- Previous studies reported varied responses (growth stimulation, inhibition, apoptosis, differentiation) to heregulins in breast and ovarian cells.
- Discrepancies in literature are attributed to differences in cell lines, ligand dose, methods, and model systems.
Purpose of the Study:
- To evaluate heregulin's effects on normal and malignant human breast and ovarian epithelial cells.
- To investigate the correlation between HER-2/neu receptor levels and heregulin response.
- To clarify the role of heregulins in epithelial cell growth.
Main Methods:
- Utilized five distinct biologic assays, including in vitro proliferation assays, direct cell counts, and clonogenicity assays (anchorage-dependent and independent).
- Assessed in vivo effects of heregulin on human cells xenografted in nude mice.
- Quantitated members of the type I receptor tyrosine kinase family (HER-1, HER-2, HER-3, HER-4) in nine cell lines across two epithelia.
Main Results:
- Heregulin demonstrated a consistent growth-stimulatory role in human breast and ovarian epithelial cells across a one-log dose range.
- No evidence of growth-inhibitory effects of heregulin was observed in human epithelial cells.
- HER-2/neu overexpression was found to influence the expression of other Type I Receptor Tyrosine Kinase family members.
Conclusions:
- Heregulin primarily acts as a growth stimulator for human breast and ovarian epithelial cells.
- Cells with higher HER-2/neu expression exhibit a more pronounced response to heregulin.
- The study clarifies heregulin's function, emphasizing its growth-promoting role and dependency on HER-2/neu levels.
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