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Published on: July 20, 2014
Epidermal growth factor receptor inhibition promotes desmosome assembly and strengthens intercellular adhesion in
Jochen H Lorch1, Jodi Klessner, J Ken Park
1Departments of Pathology and Dermatology, The Robert H. Lurie Cancer Center, Northwestern University Feinberg School of Medicine, 303 East Chicago Avenue, Chicago, IL 60611, USA.
Abstract:
The epidermal growth factor receptor (EGFR) has been proposed as a key modulator of cadherin-containing intercellular junctions, particularly in tumors that overexpress this tyrosine kinase. Here the EGFR tyrosine kinase inhibitor PKI166 and EGFR blocking antibody C225, both of which are used clinically to treat head and neck cancers, were used to determine the effects of EGFR inhibition on intercellular junction assembly and adhesion in oral squamous cell carcinoma cells. EGFR inhibition resulted in a transition from a fibroblastic morphology to a more epithelial phenotype in cells grown in low calcium; under these conditions cadherin-mediated cell-cell adhesion is normally reduced, and desmosomes are absent. The accumulated levels of desmoglein 2 (Dsg2) and desmocollin 2 increased 1.7-2.0-fold, and both desmosomal cadherin and plaque components were recruited to cell-cell borders. This redistribution was paralleled by an increase in Dsg2 and desmoplakin in the Triton-insoluble cell fraction, suggesting that EGFR blockade promotes desmosome assembly. Importantly, E-cadherin expression and solubility were unchanged. Furthermore, PKI166 blocked tyrosine phosphorylation of Dsg2 and plakoglobin following epidermal growth factor stimulation, whereas no change in phosphorylation was detected for E-cadherin and beta-catenin. The increase in Dsg2 protein was in part due to the inhibition of matrix metalloproteinase-dependent proteolysis of this desmosomal cadherin. These morphological and biochemical changes were accompanied by an increase in intercellular adhesion based on functional assays at all calcium concentrations tested. Our results suggest that EGFR inhibition promotes desmosome assembly in oral squamous cell carcinoma cells, resulting in increased cell-cell adhesion.
Insights
Inhibiting epidermal growth factor receptor (EGFR) promotes desmosome assembly and increases cell adhesion in oral cancer cells. This finding offers new insights into targeting cell junctions for head and neck cancer treatments.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Epidermal growth factor receptor (EGFR) is implicated in regulating intercellular junctions, especially in cancers overexpressing this tyrosine kinase.
- Head and neck cancers often exhibit EGFR overexpression, making it a therapeutic target.
Purpose of the Study:
- To investigate the impact of EGFR inhibition on intercellular junction assembly and adhesion in oral squamous cell carcinoma.
- To explore the molecular mechanisms underlying EGFR's role in cell-cell adhesion.
Main Methods:
- Utilized EGFR tyrosine kinase inhibitor PKI166 and EGFR blocking antibody C225.
- Analyzed morphological changes, desmosomal protein levels (Dsg2, desmocollin 2), and protein localization.
- Assessed E-cadherin and beta-catenin expression and phosphorylation.
- Measured intercellular adhesion through functional assays.
Main Results:
- EGFR inhibition induced a shift from fibroblastic to epithelial phenotype, with increased Dsg2 and desmocollin 2 levels (1.7-2.0-fold).
- Desmosomal components were recruited to cell borders, and Dsg2/desmoplakin increased in the insoluble fraction, indicating desmosome assembly.
- PKI166 inhibited Dsg2/plakoglobin phosphorylation but not E-cadherin/beta-catenin phosphorylation.
- EGFR blockade reduced matrix metalloproteinase-dependent proteolysis of Dsg2.
- Intercellular adhesion significantly increased across all tested calcium concentrations.
Conclusions:
- EGFR inhibition promotes desmosome assembly in oral squamous cell carcinoma cells.
- This process enhances intercellular adhesion, suggesting a novel therapeutic strategy for head and neck cancers by targeting EGFR and cell junctions.
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