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Anti-oncogenic activity of signalling-defective epidermal growth factor receptor mutants
N Redemann1, B Holzmann, T von Rüden
1Department of Molecular Biology, Max-Planck-Institut für Biochemie, Martinsried, Germany.
Abstract:
Overexpression and autocrine activation of the epidermal growth factor receptor (EGF-R) cause transformation of cultured cells and correlate with tumor progression in cancer patients. Dimerization and transphosphorylation are crucial events in the process by which receptors with tyrosine kinase activity generate normal and transforming cellular signals. Interruption of this process by inactive receptor mutants offers the potential to inhibit ligand-induced cellular responses. Using recombinant retroviruses, we have examined the effects of signalling-incompetent EGF-R mutants on the growth-promoting and transforming potential of ligand-activated, overexpressed wild-type EGF-R and the v-erbB oncogene product. Expression of a soluble extracellular EGF-R domain had little if any effect on the growth and transformation of NIH 3T3 cells by either tyrosine kinase. However, both a kinase-negative EGF-R point mutant (HERK721A) and an EGF-R lacking 533 C-terminal amino acids efficiently inhibited wild-type EGF-R-mediated, de novo DNA synthesis and cell transformation in a dose-dependent manner. Furthermore, coexpression with the v-erbBES4 oncogene product in NIH 3T3 cells resulted in transphosphorylation of the HERK721A mutant receptor and reduced soft-agar colony growth but had no effect in a focus formation assay. These results demonstrate that signalling-defective receptor tyrosine kinase mutants differentially interfere with oncogenic signals generated by either overexpressed EGF-R or the retroviral v-erbBES4 oncogene product.
Insights
Signaling-defective epidermal growth factor receptor (EGF-R) mutants inhibit cell transformation. These EGF-R mutants block EGF-R-mediated DNA synthesis and oncogenic signaling, offering potential cancer therapies.
Area of Science:
- Molecular Biology
- Cellular Biology
- Oncology
Background:
- Epidermal growth factor receptor (EGF-R) overexpression and autocrine activation drive cell transformation and cancer progression.
- Receptor dimerization and transphosphorylation are key for generating cellular signals.
- Inactive receptor mutants can potentially inhibit ligand-induced cellular responses.
Purpose of the Study:
- To investigate the effects of signaling-incompetent EGF-R mutants on wild-type EGF-R and v-erbB oncogene-induced cell growth and transformation.
- To determine if specific EGF-R mutants can interfere with oncogenic signaling pathways.
Main Methods:
- Recombinant retroviruses were used to express EGF-R mutants in NIH 3T3 cells.
- Assays included monitoring de novo DNA synthesis, cell transformation, and soft-agar colony growth.
- Coexpression of mutants with wild-type EGF-R or v-erbBES4 oncogene was analyzed.
Main Results:
- A kinase-negative EGF-R mutant (HERK721A) and a truncated EGF-R mutant inhibited EGF-R-mediated DNA synthesis and cell transformation in a dose-dependent manner.
- Coexpression with v-erbBES4 reduced soft-agar colony growth but did not affect focus formation.
- A soluble extracellular EGF-R domain showed minimal effect on cell growth and transformation.
Conclusions:
- Signaling-defective EGF-R mutants differentially interfere with oncogenic signals.
- These mutants hold potential for inhibiting signaling from overexpressed EGF-R or viral oncogenes like v-erbB.