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Aberrant expression and regulation of hepatic epidermal growth factor receptor in a c-myc transgenic mouse model
J T Woitach1, E A Conner, P J Wirth
1Laboratory of Experimental Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892-4255, USA.
Abstract:
In an attempt to elucidate the mechanism by which c-myc and transforming growth factor-alpha (TGF-alpha) cooperate in hepatocyte tumor development, we have analyzed signaling by the epidermal growth factor (EGF) receptor and the consequent regulation of receptor number in transgenic mice bearing the c-myc transgene under the control of the albumin enhancer/promoter. 125I-EGF binding and Scatchard analysis indicated a single class of high affinity receptors with the total number of binding sites of 1.2 X 10(4) +/- 600 and 2.5 X 10(5) +/- 1000 sites/cell in the normal and c-myc hepatocytes in primary culture, respectively. After 72 h of EGF exposure in culture, the number of detectable EGF receptors on the cell surface of the c-myc hepatocytes was not reduced, whereas the number of EGF receptors on normal hepatocytes was reduced to 32% that of untreated hepatocytes. Nuclear run-on experiments done with nuclei isolated from intact livers demonstrated that transcription of the EGF receptor was 4.9-fold higher in c-myc mice. Increased levels of the transcriptional factor SP1 in the c-myc hepatocytes in vivo and in primary culture, suggest a mechanism for the increased transcription of the EGF receptor. c-myc also increases the expression of TGF-alpha; a consequent increase in tyrosine phosphorylation is also detected in vivo. Thus, the increased number of EGF receptors in c-myc expressing hepatocytes, even after prolonged exposure to EGF, or TGF-alpha in vivo, may allow greater triggering of the EGF receptor signaling cascade.
Insights
The c-myc gene increases epidermal growth factor (EGF) receptor numbers in hepatocytes, promoting tumor development. This occurs because c-myc enhances EGF receptor transcription and prevents receptor downregulation, leading to sustained signaling.
Area of Science:
- Hepatocellular carcinoma research
- Molecular oncology
Background:
- Hepatocyte tumor development involves cooperation between c-myc and transforming growth factor-alpha (TGF-alpha).
- Epidermal growth factor (EGF) receptor signaling plays a crucial role in cell growth and proliferation.
Purpose of the Study:
- To elucidate the mechanism of c-myc and TGF-alpha cooperation in hepatocyte tumor development.
- To analyze EGF receptor signaling and its regulation in c-myc transgenic mice.
Main Methods:
- Primary hepatocyte culture from c-myc transgenic and normal mice.
- 125I-EGF binding assays and Scatchard analysis.
- Nuclear run-on experiments to assess gene transcription.
- Analysis of SP1 transcriptional factor levels.
Main Results:
- Hepatocytes with c-myc transgene showed a significantly higher number of EGF receptors (2.5 x 10^5 sites/cell) compared to normal hepatocytes (1.2 x 10^4 sites/cell).
- c-myc hepatocytes resisted EGF-induced receptor downregulation, maintaining receptor numbers after 72h EGF exposure.
- EGF receptor transcription was 4.9-fold higher in c-myc mice livers, linked to increased SP1 levels.
- c-myc also increased TGF-alpha expression and tyrosine phosphorylation in vivo.
Conclusions:
- Increased EGF receptor number and resistance to downregulation in c-myc hepatocytes contribute to enhanced EGF receptor signaling.
- Elevated SP1 levels likely drive increased EGF receptor transcription in c-myc expressing hepatocytes.
- Sustained EGF receptor signaling due to c-myc may promote hepatocyte tumor development.