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Identification of EGFR and RAS Inhibitors using Caenorhabditis elegans
Published on: October 5, 2020
Functional RNAi Screens Define Distinct Protein Kinase Vulnerabilities in EGFR-Dependent HNSCC Cell Lines
Trista K Hinz1, Emily K Kleczko1, Katherine R Singleton1
1Departments of Craniofacial Biology (T.K.H., E.K.K., K.R.S., J.C., L.A.M., L.E.H.) and Medicine (J.K., A.C.T.), University of Colorado Anschutz Medical Campus, Aurora, Colorado.
Abstract:
The inhibitory epidermal growth factor receptor (EGFR) antibody, cetuximab, is an approved therapy for head and neck squamous cell carcinoma (HNSCC). Despite tumor response observed in some HNSCC patients, cetuximab alone or combined with radio- or chemotherapy fails to yield long-term control or cures. We hypothesize that a flexible receptor tyrosine kinase coactivation signaling network supports HNSCC survival in the setting of EGFR blockade, and that drugs disrupting this network will provide superior tumor control when combined with EGFR inhibitors. In this work, we submitted EGFR-dependent HNSCC cell lines to RNA interference-based functional genomics screens to identify, in an unbiased fashion, essential protein kinases for growth and survival as well as synthetic lethal targets for combined inhibition with EGFR antagonists. Mechanistic target of rapamycin kinase (MTOR) and erythroblastosis oncogene B (ERBB)3 were identified as high-ranking essential kinase hits in the HNSCC cell lines. MTOR dependency was confirmed by distinct short hairpin RNAs (shRNAs) and high sensitivity of the cell lines to AZD8055, whereas ERBB3 dependency was validated by shRNA-mediated silencing. Furthermore, a synthetic lethal kinome shRNA screen with a pan-ERBB inhibitor, AZD8931, identified multiple components of the extracellular signal-regulated kinase (ERK) mitogen-activated protein kinase pathway, consistent with ERK reactivation and/or incomplete ERK pathway inhibition in response to EGFR inhibitor monotherapy. As validation, distinct mitogen-activated protein kinase kinase (MEK) inhibitors yielded synergistic growth inhibition when combined with the EGFR inhibitors, gefitinib and AZD8931. The findings identify ERBB3 and MTOR as important pharmacological vulnerabilities in HNSCC and support combining MEK and EGFR inhibitors to enhance clinical efficacy in HNSCC. SIGNIFICANCE STATEMENT: Many cancers are driven by nonmutated receptor tyrosine kinase coactivation networks that defy full inhibition with single targeted drugs. This study identifies erythroblastosis oncogene B (ERBB)3 as an essential protein kinase in epidermal growth factor receptor-dependent head and neck squamous cell cancer (HNSCC) cell lines and a synthetic lethal interaction with the extracellular signal-regulated kinase mitogen-activated protein kinase pathway that provides a rationale for combining pan-ERBB and mitogen-activated protein kinase inhibitors as a therapeutic approach in subsets of HNSCC.
Insights
EGFR inhibitors show limited success in head and neck cancers. Combining MEK and EGFR inhibitors, targeting ERBB3 and MTOR pathways, offers improved tumor control by disrupting resistance networks.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Epidermal growth factor receptor (EGFR) inhibitors like cetuximab are approved for head and neck squamous cell carcinoma (HNSCC).
- However, current EGFR-targeted therapies often fail to achieve long-term control or cures in HNSCC patients.
- Receptor tyrosine kinase coactivation networks may enable HNSCC survival despite EGFR blockade.
Purpose of the Study:
- To identify essential protein kinases and synthetic lethal targets in EGFR-dependent HNSCC cell lines.
- To discover novel therapeutic strategies by combining EGFR inhibitors with drugs targeting identified vulnerabilities.
- To elucidate resistance mechanisms to EGFR inhibition in HNSCC.
Main Methods:
- Functional genomics screens using RNA interference (RNAi) in EGFR-dependent HNSCC cell lines.
- Identification of essential kinases, including Mechanistic Target of Rapamycin Kinase (MTOR) and Erythroblastosis Oncogene B (ERBB)3.
- Synthetic lethal kinome screens with a pan-ERBB inhibitor to identify Extracellular Signal-Regulated Kinase (ERK) pathway components.
Main Results:
- Mechanistic target of rapamycin kinase (MTOR) and ERBB3 were identified as essential kinases for HNSCC cell growth and survival.
- RNAi targeting MTOR and ERBB3 confirmed their dependency in HNSCC cell lines.
- Combined inhibition of Mitogen-Activated Protein Kinase Kinase (MEK) and EGFR inhibitors demonstrated synergistic growth inhibition.
Conclusions:
- ERBB3 and MTOR represent significant pharmacological vulnerabilities in HNSCC.
- Combining MEK and EGFR inhibitors shows promise for enhancing therapeutic efficacy in HNSCC.
- Targeting coactivation networks and synthetic lethal interactions offers a strategy to overcome resistance to EGFR inhibitors.

