Enhancing Inhibitory Potency and Serum Stability of Peptide Inhibitors of the EphB2 Receptor

Brian E Garcia1, Sophie R Epstein1, Sofia A Legarreta1

  • 1Department of Chemistry and Biochemistry, Fordham University, 441 E. Fordham Rd., Bronx, New York 10458, United States.

Biochemistry
|April 3, 2026
PubMed

Insights

Researchers modified the SNEW peptide to improve its targeting of the EphB2 receptor, enhancing its stability and potency for potential cancer therapies. These modifications offer new strategies for peptide-based drug development.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cancer Research

Background:

  • Ephrin (Eph) receptors are crucial in development and cell signaling.
  • Eph receptor upregulation is observed in various cancers, making them therapeutic targets.
  • Targeting specific Eph receptors is challenging due to high sequence homology.

Purpose of the Study:

  • To improve the affinity and stability of the EphB2 receptor-targeting SNEW peptide.
  • To develop SNEW variants with enhanced potency and serum stability for cancer therapeutics.
  • To explore generalizable modification strategies for peptide-based targeting.

Main Methods:

  • Phage display was used to isolate initial peptides targeting Eph receptors.
  • The SNEW peptide was modified by replacing N-terminal serine with cyclic α-amino acids.
  • A central proline residue was substituted with 4,4-difluoroproline to enhance serum stability.

Main Results:

  • N-terminal modifications increased inhibitory potency against the EphB2 receptor-ephrin B2 interaction.
  • 4,4-difluoroproline substitution significantly improved serum stability.
  • Developed SNEW variants demonstrated enhanced potency and stability while retaining specificity for EphB2.

Conclusions:

  • Modified SNEW peptides show promise as lead candidates for targeting EphB2 in cancer and other diseases.
  • The employed modification strategies can be extended to other peptides for improved protein targeting.
  • This work advances peptide-based therapeutic strategies for EphB2-associated conditions.

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