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Published on: May 18, 2020
Functional interaction between mouse erbB3 and wild-type rat c-neu in transgenic mouse mammary tumor cells
Aeree Kim1, Bolin Liu, Dalia Ordonez-Ercan
1Department of Pathology and College of Medicine, Oklahoma University Health Sciences Center (OUHSC), Oklahoma City, OK, USA. ark@korea.ac.kr
Introduction:
Co-expression of several receptor tyrosine kinases (RTKs), including erbB2 and erbB3, is frequently identified in breast cancers. A member of the RTK family, the kinase-deficient erbB3 can activate downstream signaling via heterodimer formation with erbB2. We studied the expression of RTK receptors in mammary tumors from the wild-type (wt) rat c-neu transgenic model. We hypothesized that physical and functional interactions between the wt rat neu/ErbB2 transgene and mouse ErbB3-encoded proteins could occur, activating downstream signaling and promoting mammary oncogenesis.
Methods:
Immunohistochemical and Western blot analyses were performed to study the expression of rat c-neu/ErbB2 and mouse erbB3 in mammary tumors and tumor-derived cell lines from the wt rat c-neu transgenic mice. Co-immunoprecipitation methods were employed to quantitate heterodimerization between the transgene-encoded protein erbB2 and the endogenous mouse erbB3. Tumor cell growth in response to growth factors, such as Heregulin (HRG), epidermal growth factor (EGF), or insulin-like growth factor-1 (IGF-1), was also studied. Post-HRG stimulation, activation of the RTK downstream signaling was determined by Western blot analyses using antibodies against phosphorylated Akt and mitogen-activated protein kinase (MAPK), respectively. Specific inhibitors were then used with cell proliferation assays to study the phosphoinositide-3 kinase (PI-3K)/Akt and MAPK kinase (MEK)/MAPK pathways as possible mechanisms of HRG-induced tumor cell proliferation.
Results:
Mammary tumors and tumor-derived cell lines frequently exhibited elevated co-expression of erbB2 and erbB3. The transgene-encoded protein erbB2 formed a stable heterodimer complex with endogenous mouse erbB3. HRG stimulation promoted physical and functional erbB2/erbB3 interactions and tumor cell growth, whereas no response to EGF or IGF-1 was observed. HRG treatment activated both the Akt and MAPK pathways in a dose- and time-dependent manner. Both the PI-3K inhibitor LY 294002 and MEK inhibitor PD 98059 significantly decreased the stimulatory effect of HRG on tumor cell proliferation.
Conclusion:
The co-expression of wt rat neu/ErbB2 transgene and mouse ErbB3, with physical and functional interactions between these two species of RTK receptors, was demonstrated. These data strongly suggest a role for erbB3 in c-neu (ErbB2)-associated mammary tumorigenesis, as has been reported in human breast cancers.
Insights
This study shows that co-expression of ErbB2 and ErbB3 receptors in rat mammary tumors promotes oncogenesis. Physical and functional interactions between these receptor tyrosine kinases activate downstream signaling pathways, driving tumor cell growth.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Co-expression of receptor tyrosine kinases (RTKs), including ErbB2 and ErbB3, is common in breast cancers.
- The kinase-deficient ErbB3 activates downstream signaling through heterodimer formation with ErbB2.
- This study investigates RTK expression in mammary tumors from a wild-type rat c-neu transgenic model.
Purpose of the Study:
- To investigate the physical and functional interactions between the rat neu/ErbB2 transgene and mouse ErbB3.
- To determine if these interactions activate downstream signaling and promote mammary oncogenesis.
- To explore the role of ErbB3 in c-neu (ErbB2)-associated mammary tumorigenesis.
Main Methods:
- Immunohistochemical and Western blot analyses to assess ErbB2 and ErbB3 expression in tumors and cell lines.
- Co-immunoprecipitation to quantify ErbB2/ErbB3 heterodimerization.
- Cell proliferation assays and Western blot analyses to study downstream signaling (Akt, MAPK) activation by growth factors (HRG, EGF, IGF-1) and pathway inhibitors (PI-3K, MEK).
Main Results:
- Mammary tumors and cell lines showed elevated co-expression of ErbB2 and ErbB3.
- Transgene-encoded ErbB2 formed stable heterodimers with endogenous mouse ErbB3.
- Heregulin (HRG) stimulation enhanced ErbB2/ErbB3 interactions and tumor cell growth, activating Akt and MAPK pathways.
- EGF and IGF-1 did not stimulate tumor cell growth.
Conclusions:
- Demonstrated co-expression and physical/functional interactions between rat neu/ErbB2 and mouse ErbB3 in mammary tumors.
- Strongly suggest a role for ErbB3 in c-neu (ErbB2)-driven mammary tumorigenesis.
- Findings align with the known role of ErbB3 in human breast cancers.
