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Updated: Jun 23, 2026

Monitoring eIF4F Assembly by Measuring eIF4E-eIF4G Interaction in Live Cells
Published on: May 1, 2020
Inhibition of ovarian cancer growth by a tumor-targeting peptide that binds eukaryotic translation initiation factor
Song Yi Ko1, Huifang Guo, Nicolas Barengo
1Department of Systems Biology, University of Texas M. D. Anderson Cancer Center, and Cancer Biology Program, Graduate School of Biomedical Sciences, University of Texas Health Sciences Center, Houston, Texas, USA.
Purpose:
A critical step of protein synthesis involves the liberation of the mRNA cap-binding translation initiation factor eIF4E from 4EBP inhibitory binding proteins, and its engagement to the scaffolding protein eIF4G. eIF4E is a candidate target for cancer therapy because it is overexpressed or activated in many types of tumors and has tumorigenic properties. Our aim was to design and evaluate 4EBP-based peptides for their antitumor activity in ovarian cancer.
Experimental Design:
The ability of peptides to bind and inhibit eIF4E was determined by immunoprecipitation and by assaying cap-dependent reporter synthesis. To target ovarian tumors, the lead candidate 4EBP peptide was fused to an analog of gonadotropin-releasing hormone (GnRH). Cellular uptake of peptide, and effects on cell viability and cell death were determined. The antitumor activity of fusion peptide was evaluated in female nude mice bearing i.p. ovarian tumor xenografts.
Results:
4EBP-based peptides bound eIF4E, prevented eIF4E from binding eIF4G, and inhibited cap-dependent translation. GnRH agonist-4EBP fusion peptide was taken up by, and inhibited the growth of, GnRH receptor-expressing tumor cells, but not receptor-negative cells. Intraperitoneal tumor burden was significantly smaller in mice treated with fusion peptide than in mice treated with saline (P < 0.001). Ascites was also reduced in peptide-treated mice. Significant cytotoxic effects to host tissues were not observed. On the other hand, treatment with GnRH agonist alone did not inhibit tumor growth or ascites.
Conclusion:
Because ovarian cancer is rarely cured by conventional chemotherapies, GnRH-4EBP fusion peptide may be of therapeutic potential for treatment of this disease.
Insights
New 4EBP-based peptides targeting eukaryotic initiation factor 4E (eIF4E) show promise for ovarian cancer treatment. A fusion peptide inhibited tumor growth and ascites in mice without significant host toxicity.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Protein synthesis regulation is crucial for cell growth.
- Eukaryotic initiation factor 4E (eIF4E) is a key regulator of cap-dependent translation.
- eIF4E is overexpressed in many cancers, including ovarian cancer, making it a therapeutic target.
Purpose of the Study:
- To design and evaluate 4EBP-based peptides for antitumor activity in ovarian cancer.
- To assess the efficacy of a fusion peptide combining a 4EBP analog with a gonadotropin-releasing hormone (GnRH) agonist for targeted ovarian tumor therapy.
Main Methods:
- Peptides were assessed for their ability to bind and inhibit eIF4E using immunoprecipitation and reporter assays.
- A lead 4EBP peptide was fused to a GnRH analog for targeted delivery to GnRH receptor-expressing ovarian tumors.
- Cellular uptake, cytotoxicity, and in vivo antitumor activity were evaluated in cell lines and mouse xenograft models.
Main Results:
- 4EBP-based peptides effectively bound eIF4E, inhibited cap-dependent translation, and prevented eIF4G binding.
- The GnRH-4EBP fusion peptide demonstrated targeted uptake and growth inhibition in GnRH receptor-positive ovarian tumor cells.
- In vivo studies showed significant reduction in tumor burden and ascites in mice treated with the fusion peptide compared to controls, with no significant host tissue toxicity.
Conclusions:
- The GnRH-4EBP fusion peptide exhibits therapeutic potential for ovarian cancer treatment.
- Targeted delivery strategies can enhance the efficacy of eIF4E inhibitors.
- This approach offers a promising alternative for ovarian cancer, which is often resistant to conventional therapies.
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