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Ornithine decarboxylase transformation of NIH/3T3 cells is mediated by altered epidermal growth factor receptor
J A Moshier1, E Malecka-Panas, H Geng
1Department of Internal Medicine, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.
Abstract:
Ornithine decarboxylase (ODC) has been shown to be oncogenic in transfected NIH/3T3 cells overexpressing the enzyme from a heterologous promoter. These cells, designated as NODC-2 cells, acquire proliferative properties associated with tumorigenic transformation such as loss of contact inhibition, decreased population doubling time, anchorage-independent growth, and tumor production in nude mice. At least one of these parameters, loss of contact inhibition, remains dependent on elevated ODC levels. We have used these cells to investigate the molecular mechanisms by which ODC overexpression drives cell transformation and to examine the involvement of other proto-oncogene products in this process. An interaction between ODC overexpression and the epidermal growth factor receptor (EGF-R) was suggested initially by the elevation of both basal (300%) and ligand-induced (457%) EGF-R tyrosine kinase activities in NODC-2 cells compared to similarly treated control NLK cells. Disruption of EGF-R mediated signal transduction in NODC-2 cells both by treatment with tyrphostin-25 or by transfection with a vector expressing a dominant negative EGF-R mutant resulted in reacquisition of contact-inhibited growth and suppression of anchorage-independent, clonogenic growth in soft agar. We conclude that ODC-induced transformation of NIH/3T3 cells is mediated, at least partly, by alterations in EGF-R signal transduction activity.
Insights
Ornithine decarboxylase (ODC) overexpression drives cell transformation by altering epidermal growth factor receptor (EGF-R) signaling. This leads to cancer-like properties, but blocking EGF-R can reverse these changes.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Ornithine decarboxylase (ODC) is oncogenic, promoting tumorigenic transformation in NIH/3T3 cells.
- Overexpression of ODC in NODC-2 cells results in loss of contact inhibition and anchorage-independent growth.
Purpose of the Study:
- Investigate molecular mechanisms of ODC-induced cell transformation.
- Examine the role of proto-oncogenes, specifically epidermal growth factor receptor (EGF-R), in ODC-driven transformation.
Main Methods:
- Utilized NIH/3T3 cells overexpressing ODC (NODC-2 cells) and control NLK cells.
- Assessed EGF-R tyrosine kinase activity (basal and ligand-induced).
- Interfered with EGF-R signaling using tyrphostin-25 and a dominant-negative EGF-R mutant.
Main Results:
- NODC-2 cells showed significantly elevated basal (300%) and ligand-induced (457%) EGF-R tyrosine kinase activity.
- Disrupting EGF-R signaling restored contact inhibition and suppressed anchorage-independent growth in NODC-2 cells.
Conclusions:
- ODC-induced cell transformation is partly mediated by alterations in EGF-R signal transduction.
- EGF-R signaling plays a critical role in the oncogenic effects of ODC overexpression.