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Therapeutic Gene Delivery and Transfection in Human Pancreatic Cancer Cells using Epidermal Growth Factor Receptor-targeted Gelatin Nanoparticles
Published on: January 4, 2012
A potential peptide therapeutic derived from the juxtamembrane domain of the epidermal growth factor receptor
Aislyn D W Boran1, Joseph Seco, Vinodh Jayaraman
1Department of Pharmacology and Systems Therapeutics, Mount Sinai School of Medicine, New York, New York, United States of America.
Abstract:
The epidermal growth factor receptor (EGFR) is involved in many cancers and EGFR has been heavily pursued as a drug target. Drugs targeting EGFR have shown promising clinical results for several cancer types. However, resistance to EGFR inhibitors often occurs, such as with KRAS mutant cancers, therefore new methods of targeting EGFR are needed. The juxtamembrane (JXM) domain of EGFR is critical for receptor activation and targeting this region could potentially be a new method of inhibiting EGFR. We hypothesized that the structural role of the JXM region could be mimicked by peptides encoding a JXM amino acid sequence, which could interfere with EGFR signaling and consequently could have anti-cancer activity. A peptide encoding EGFR 645-662 conjugated to the Tat sequence (TE-64562) displayed anti-cancer activity in multiple human cancer cell types with diminished activity in non-EGFR expressing cells and non-cancerous cells. In nude mice, TE-64562 delayed MDA-MB-231 tumor growth and prolonged survival, without inducing toxicity. TE-64562 induced non-apoptotic cell death after several hours and caspase-3-mediated apoptotic cell death with longer treatment. Mechanistically, TE-64562 bound to EGFR, inhibited its dimerization and caused its down-regulation. TE-64562 reduced phosphorylated and total EGFR levels but did not inhibit kinase activity and instead prolonged it. Our analysis of patient data from The Cancer Genome Atlas supported the hypothesis that down-regulation of EGFR is a potential therapeutic strategy, since phospho- and total-EGFR levels were strongly correlated in a large majority of patient tumor samples, indicating that lower EGFR levels are associated with lower phospho-EGFR levels and presumably less proliferative signals in breast cancer. Akt and Erk were inhibited by TE-64562 and this inhibition was observed in vivo in tumor tissue upon treatment with TE-64562. These results are the first to indicate that the JXM domain of EGFR is a viable drug target for several cancer types.
Insights
A novel peptide targeting the juxtamembrane domain of the epidermal growth factor receptor (EGFR) shows anti-cancer activity by inhibiting EGFR signaling and down-regulation. This peptide demonstrated efficacy in preclinical models, suggesting a new therapeutic strategy for EGFR-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Epidermal growth factor receptor (EGFR) is a key target in cancer therapy, but resistance mechanisms necessitate novel approaches.
- The juxtamembrane (JXM) domain of EGFR plays a critical role in receptor activation and presents a potential new drug target.
- Existing EGFR inhibitors face challenges with resistance, particularly in KRAS mutant cancers.
Purpose of the Study:
- To investigate the potential of targeting the EGFR JXM domain using a peptide-based strategy.
- To evaluate the anti-cancer activity and mechanism of action of a novel JXM-targeting peptide (TE-64562).
Main Methods:
- Synthesized a peptide (TE-64562) mimicking the EGFR JXM amino acid sequence and conjugated it with the Tat sequence.
- Assessed anti-cancer activity in various human cancer cell lines and in a mouse xenograft model (MDA-MB-231).
- Investigated the molecular mechanisms, including EGFR dimerization, down-regulation, signaling pathway inhibition (Akt, Erk), and cell death induction.
Main Results:
- TE-64562 exhibited anti-cancer activity in multiple cancer cell types, with specificity for EGFR-expressing cells.
- In vivo studies showed delayed tumor growth and prolonged survival in mice treated with TE-64562, without apparent toxicity.
- The peptide induced both non-apoptotic and caspase-3-mediated apoptotic cell death, inhibited EGFR dimerization and down-regulation, and reduced Akt/Erk phosphorylation.
Conclusions:
- The EGFR JXM domain is a viable and druggable target for developing novel anti-cancer therapies.
- The peptide TE-64562 represents a promising new therapeutic candidate for EGFR-driven cancers, offering a distinct mechanism from traditional kinase inhibitors.
- EGFR down-regulation, as induced by TE-64562, is a validated strategy supported by patient data correlating EGFR levels with proliferation signals.
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