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Quantitative Mass Spectrometric Profiling of Cancer-cell Proteomes Derived From Liquid and Solid Tumors
Published on: February 27, 2015
Quantitative chemical proteomics reveals new potential drug targets in head and neck cancer
Zhixiang Wu1, Jessica B Doondeea, Amin Moghaddas Gholami
1Chair of Proteomics and Bioanalytics, Technische Universität München, Freising, Germany.
Abstract:
Tumors of the head and neck represent a molecularly diverse set of human cancers, but relatively few proteins have actually been shown to drive the disease at the molecular level. To identify new targets for individualized diagnosis or therapeutic intervention, we performed a kinase centric chemical proteomics screen and quantified 146 kinases across 34 head and neck squamous cell carcinoma (HNSCC) cell lines using intensity-based label-free mass spectrometry. Statistical analysis of the profiles revealed significant intercell line differences for 42 kinases (p < 0.05), and loss of function experiments using siRNA in high and low expressing cell lines identified kinases including EGFR, NEK9, LYN, JAK1, WEE1, and EPHA2 involved in cell survival and proliferation. EGFR inhibition by the small molecule inhibitors lapatinib, gefitinib, and erlotinib as well as siRNA led to strong reduction of viability in high but not low expressing lines, confirming EGFR as a drug target in 10-20% of HNSCC cell lines. Similarly, high, but not low EPHA2-expressing cells showed strongly reduced viability concomitant with down-regulation of AKT and ERK signaling following EPHA2 siRNA treatment or EPHA1-Fc ligand exposure, suggesting that EPHA2 is a novel drug target in HNSCC. This notion is underscored by immunohistochemical analyses showing that high EPHA2 expression is detected in a subset of HNSCC tissues and is associated with poor prognosis. Given that the approved pan-SRC family kinase inhibitor dasatinib is also a very potent inhibitor of EPHA2, our findings may lead to new therapeutic options for HNSCC patients. Importantly, the strategy employed in this study is generic and therefore also of more general utility for the identification of novel drug targets and molecular pathway markers in tumors. This may ultimately lead to a more rational approach to individualized cancer diagnosis and therapy.
Insights
Researchers identified novel drug targets for head and neck squamous cell carcinoma (HNSCC) by analyzing kinase activity. Epidermal Growth Factor Receptor (EGFR) and EPH receptor A2 (EPHA2) show promise for targeted therapies in HNSCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Proteomics
Background:
- Head and neck cancers (HNSCC) are molecularly diverse, but specific drivers are not well-defined.
- Identifying novel molecular targets is crucial for developing individualized therapies for HNSCC.
Purpose of the Study:
- To identify novel protein kinase drug targets in head and neck squamous cell carcinoma (HNSCC).
- To investigate the role of identified kinases in HNSCC cell survival and proliferation.
- To evaluate the therapeutic potential of targeting identified kinases in HNSCC.
Main Methods:
- Kinase-centric chemical proteomics screen using mass spectrometry on 34 HNSCC cell lines.
- Quantification of 146 kinases and statistical analysis to identify significant differences.
- Loss-of-function experiments using siRNA to assess kinase involvement in cell viability and proliferation.
Main Results:
- Significant inter-cell line differences were observed for 42 kinases.
- Kinases including EGFR, NEK9, LYN, JAK1, WEE1, and EPHA2 were implicated in HNSCC cell survival and proliferation.
- EGFR inhibition reduced viability in 10-20% of HNSCC lines; EPHA2 inhibition reduced viability and affected AKT/ERK signaling, with high EPHA2 expression linked to poor prognosis.
Conclusions:
- EGFR is a validated drug target in a subset of HNSCC.
- EPHA2 represents a novel therapeutic target in HNSCC, potentially targetable with existing drugs like dasatinib.
- The proteomic strategy is broadly applicable for identifying drug targets in various cancers.
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