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Published on: September 5, 2018
HER3 V104 mutations regulate cell signaling, growth, and drug sensitivity in cancer
Rosalin Mishra1, Mary Kate Kilroy1, Wasim Feroz1
1James L. Winkle College of Pharmacy, University of Cincinnati, Cincinnati, Ohio, USA.
Abstract:
HER3 is mutated in ~2%-10% of cancers depending on the cancer type. We found the HER3-V104L mutation to be activating from patient-derived mutations introduced via lentiviral transduction in HER3KO HER2 + HCC1569 breast cancer cells in which endogenous HER3 was eliminated by CRISPR/Cas9. Cells expressing HER3-V104L showed higher p-HER3 and p-ERK1/2 expression versus cells expressing wild-type HER3 or HER3-V104M. Patients whose tumor expressed the HER3 V104L variant had a reduced probability of overall survival compared to patients lacking a HER3 mutation whereas we did not find a statistically significant difference in overall survival of various cancer patients with the HER3 V104M mutation. Our data showed that HER2 inhibitors suppressed cell growth of HCC1569HER3KO cells stably expressing the HER3-V104L mutation. Cancer cell lines (SNU407, UC15 and DV90) with endogenous HER3-V104M mutation showed reduced cell proliferation and p-HER2/p-ERK1/2 expression with HER2 inhibitor treatment. Knock down of HER3 abrogated cell proliferation in the above cell lines which were overall more sensitive to the ERK inhibitor SCH779284 versus PI3K inhibitors. HER3-V104L mutation stabilized HER3 protein expression in COS7 and SNUC5 cells. COS7 cells transiently transfected with the HER3-V104L mutation in the presence of HER binding partners showed higher expression of p-HER3, p-ERK1/2 versus HER3-WT in a NRG-independent manner without any change in AKT signaling. Overall, this study shows the clinical relevance of the HER3 V104L and the V104M mutations and its response to HER2, PI3K and ERK inhibitors.
Insights
The HER3-V104L mutation activates cancer cell growth and reduces survival, while HER3-V104M shows reduced proliferation. Both mutations impact responses to HER2, PI3K, and ERK inhibitors, highlighting their clinical relevance in cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Human Epidermal growth factor Receptor 3 (HER3) mutations occur in 2%-10% of cancers.
- Specific HER3 mutations, like V104L and V104M, may influence cancer progression and treatment response.
- Understanding the functional impact of these mutations is crucial for targeted cancer therapies.
Purpose of the Study:
- To investigate the functional consequences of HER3-V104L and HER3-V104M mutations.
- To evaluate the impact of these mutations on cancer cell proliferation and signaling pathways.
- To determine the efficacy of HER2, PI3K, and ERK inhibitors in cancers harboring these HER3 mutations.
Main Methods:
- Utilized CRISPR/Cas9 to create HER3 knockout (HER3KO) HCC1569 breast cancer cells.
- Introduced patient-derived HER3 mutations (V104L, V104M) via lentiviral transduction.
- Assessed protein expression (p-HER3, p-ERK1/2), cell proliferation, and signaling pathway activation (AKT) in response to targeted inhibitors.
Main Results:
- HER3-V104L mutation demonstrated activating effects, increasing p-HER3 and p-ERK1/2 levels and reducing patient survival.
- HER3-V104L expressing cells showed suppressed growth with HER2 inhibitors.
- HER3-V104M mutations were associated with reduced proliferation and sensitivity to ERK inhibitors, with HER3 knockdown abrogating proliferation.
Conclusions:
- The HER3-V104L mutation is clinically relevant, promoting cancer growth and indicating poorer survival.
- Both HER3-V104L and HER3-V104M mutations influence cellular responses to HER2, PI3K, and ERK inhibitors.
- Targeting HER3 signaling pathways, particularly ERK, offers potential therapeutic strategies for cancers with these specific mutations.
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