Abstract
AbstractHere, we report the structure-guided identification pipeline of a novel PrPC-binding peptide, PEP1, derived from Brucella abortus Hsp60 through computational docking. Computational modeling predicted that PEP1 engages the PrPC binding interface with favorable binding energetics, motivating its experimental evaluation as a receptor-targeting ligand. Fusion of PEP1 to a model protein enabled receptor-mediated targeting to intestinal M-cell-associated regions and resulted in increased mucosal IgA and systemic IgG responses relative to the untargeted protein. Together, these findings establish PEP1 as a minimal peptide ligand that promotes receptor-mediated antigen uptake through M cells, demonstrating the utility of structure-guided approaches for discovering functional targeting peptides.
| Original language | English |
|---|---|
| Article number | 118579 |
| Journal | Bioorganic and Medicinal Chemistry |
| Volume | 135 |
| DOIs | |
| State | Published - 2026.04 |
Keywords
- Brucella abortusHsp60
- Cellular prion protein receptor
- Computational docking
- M-cell targeting peptide
- Mucosal immunity
- Oral vaccines
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