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Updated: Jul 15, 2026

Deciphering the Structural Effects of Activating EGFR Somatic Mutations with Molecular Dynamics Simulation
Published on: May 20, 2020
ErbB3 expression and dimerization with EGFR influence pancreatic cancer cell sensitivity to erlotinib
Andrey Frolov1, Kyle Schuller, Ching-Wei D Tzeng
1Department of Surgery, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
Abstract:
Abnormal expression and signaling of ErbB receptors has been implicated in multiple epithelial malignancies, including pancreatic cancer. Erlotinib, an epidermal growth factor receptor tyrosine kinase inhibitor (EGFR-TKI), has been recently approved for pancreatic cancer treatment, but there are no reliable predictors of patient response. Expression of additional ErbB receptors seems to influence tumor response to EGFR-targeted therapy. We analyzed the influence of ErbB3 expression on pancreatic cancer cell response to erlotinib treatment. Proliferation assays of five human pancreatic cancer cell lines were performed following treatment with erlotinib. Expression and phosphorylation profiles of ErbB receptors and downstream adaptor protein (Akt, ERK1/2, STAT3, mTOR) were evaluated following stimulation with EGF or neuregulin-beta. The formation of EGFR homodimers and EGFR-ErbB3 heterodimers, necessary to enable ErbB3 downstream signaling, was demonstrated by chemical cross-linking assays. The effects of RNA inhibition of ErbB3 on sensitivity to erlotinib treatment were evaluated in AsPC-1 pancreatic cancer cells. Erlotinib inhibited Akt phosphorylation and proliferation of all the ErbB3-expressing cell lines but did not affect mTOR activation. Cross-linking studies confirmed the presence of EGFR-ErbB3 heterodimers in pancreatic cancer cells. Only the ErbB3-deficient MIA PaCa-2 cells displayed persistent Akt activation and ongoing proliferation in spite of erlotinib treatment. siRNA-mediated inhibition of ErbB3 expression in AsPC-1 cells resulted in acquired resistance to erlotinib treatment. Pancreatic cancer cells which lack ErbB3 do not display activation of the ErbB3-PI3K-Akt cascade induced by EGFR/ErbB3 heterodimers and become less critically dependent on EGFR signaling and therefore resistant to erlotinib. Pancreatic cancer expression of ErbB3 may be useful for EGFR-targeted therapy patient selection.
Insights
ErbB3 expression predicts pancreatic cancer response to erlotinib. Lack of ErbB3 leads to resistance, suggesting ErbB3 as a biomarker for epidermal growth factor receptor tyrosine kinase inhibitor therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Abnormal ErbB receptor signaling drives epithelial cancers, including pancreatic cancer.
- Erlotinib (an EGFR-TKI) is approved for pancreatic cancer, but patient response predictors are lacking.
- ErbB receptor expression influences response to EGFR-targeted therapies.
Purpose of the Study:
- To investigate the role of ErbB3 expression in pancreatic cancer cell response to erlotinib.
- To identify potential biomarkers for predicting erlotinib efficacy in pancreatic cancer.
Main Methods:
- Proliferation assays and Western blot analysis of ErbB receptors and downstream signaling proteins (Akt, ERK1/2, STAT3, mTOR).
- Chemical cross-linking assays to detect EGFR homodimers and EGFR-ErbB3 heterodimers.
- RNA interference (siRNA) to inhibit ErbB3 expression in pancreatic cancer cells.
Main Results:
- Erlotinib inhibited Akt phosphorylation and proliferation in ErbB3-expressing cell lines but not mTOR.
- EGFR-ErbB3 heterodimers were confirmed in pancreatic cancer cells.
- ErbB3-deficient cells showed sustained Akt activation and proliferation resistance to erlotinib.
- ErbB3 inhibition conferred erlotinib resistance in AsPC-1 cells.
Conclusions:
- Pancreatic cancer cells lacking ErbB3 are resistant to erlotinib due to impaired EGFR/ErbB3 heterodimer signaling.
- ErbB3 expression is a potential predictive biomarker for selecting patients for EGFR-targeted therapy in pancreatic cancer.
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