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Sorting nexin-dependent therapeutic targeting of oncogenic epidermal growth factor receptor
Benjamin Atwell1, Cheng-Yu Chen2, Matthew Christofferson1
1Department of Molecular and Cellular Biology, 1007 E Lowell St, Tucson, AZ, 85721, USA.
Abstract:
Overexpression and/or overactivation of the Epidermal Growth Factor Receptor (EGFR) is oncogenic in several tumor types yet targeting the kinase domain of wildtype EGFR has had limited success. EGFR has numerous kinase-independent roles, one of which is accomplished through the Sorting Nexin-dependent retrotranslocation of EGFR to the nucleus, which is observed in some metastatic cancers and therapeutically resistant disease. Here, we have utilized the BAR domain of Sorting Nexin 1 to create a peptide-based therapeutic (cSNX1.3) that promotes cell death in EGFR-expressing cancer. We evaluated the efficacy of cSNX1.3 in tumor-bearing WAP-TGFα transgenic mice (an EGFR-dependent model of breast cancer), where cSNX1.3 treatment resulted in significant tumor regression without observable toxicity. Evaluation of remaining tumor tissues found evidence of increased PARP cleavage, suggesting apoptotic tumor cell death. To evaluate the mechanism of action for cSNX1.3, we found that cSNX1.3 binds the C-terminus of the EGFR kinase domain at an interface site opposite the ATP binding domain with a Kd of ~4.0 µM. In vitro analysis found that cSNX1.3 inhibits the nuclear localization of EGFR. To determine specificity, we evaluated cancer cell lines expressing wildtype EGFR (MDA-MB-468, BT20 and A549), mutant EGFR (H1975) and non-transformed lines (CHO and MCF10A). Only transformed lines expressing wildtype EGFR responded to cSNX1.3, while mutant EGFR and normal cells responded better to an EGFR kinase inhibitor. Phenotypically, cSNX1.3 inhibits EGF-, NRG-, and HGF-dependent migration, but not HA-dependent migration. Together, these data indicate that targeting retrotranslocation of EGFR may be a potent therapeutic for RTK-active cancer.
Insights
A novel peptide therapeutic, cSNX1.3, targets Epidermal Growth Factor Receptor (EGFR) nuclear localization, effectively reducing tumor growth in mice. This approach shows promise for treating cancers with overactive EGFR, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Overexpression of Epidermal Growth Factor Receptor (EGFR) drives multiple cancers.
- Targeting the EGFR kinase domain has limited success, necessitating alternative strategies.
- EGFR's nuclear translocation, mediated by Sorting Nexin, is implicated in metastasis and resistance.
Purpose of the Study:
- To develop and evaluate a peptide-based therapeutic targeting EGFR nuclear localization.
- To assess the efficacy and mechanism of action of cSNX1.3 in preclinical cancer models.
Main Methods:
- Developed peptide therapeutic cSNX1.3 using the Sorting Nexin 1 BAR domain.
- Evaluated cSNX1.3 efficacy in EGFR-dependent breast cancer mouse models.
- Assessed cSNX1.3 binding, EGFR nuclear translocation inhibition, and specificity across cancer cell lines.
Main Results:
- cSNX1.3 treatment significantly regressed tumors in mice with no observable toxicity.
- Evidence of increased PARP cleavage indicated apoptotic tumor cell death.
- cSNX1.3 specifically inhibited nuclear localization of wildtype EGFR in responsive cancer cells.
Conclusions:
- Targeting EGFR retrotranslocation via cSNX1.3 is a potent therapeutic strategy for RTK-active cancers.
- cSNX1.3 demonstrates efficacy against EGFR-dependent tumors and inhibits key cancer cell behaviors.
- This approach offers a novel therapeutic avenue distinct from traditional EGFR kinase inhibitors.
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