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Updated: Jan 7, 2026

Microscopy-based Assays for High-throughput Screening of Host Factors Involved in Brucella Infection of Hela Cells
Published on: August 5, 2016
OMP16-targeting monoclonal antibodies H4 and E6 reveal essential linear epitopes for Brucella immunoprotection
Yunyi Zhai1, Kaihui Sun1, Ye Yuan1
1College of Veterinary Medicine, Northwest A&F University, Yangling, 712100, China; Engineering Research Center of Efficient New Vaccines for Animals, Ministry of Education, Yangling, 712100, China.
Abstract:
Brucellosis, a global zoonosis, faces significant challenges from lacking safe vaccines and therapies. OMP16, a key Brucella virulence factor essential for bacterial survival, also functions as a protective antigen capable of activating host immunity. However, not all OMP16-targeting antibodies confer immunoprotection; antibodies against non-protective epitopes may consume immune resources and even exacerbate infection. To validate the protective potential of two OMP16-targeting monoclonal antibodies (H4/E6) and identify their corresponding epitopes, we established in vitro models showing both mediate macrophage opsonophagocytosis, bactericidal activity, and NK cell-mediated ADCC. Notably, E6 additionally triggered complement-dependent bacteriolysis. Murine challenge studies confirmed that both mAbs reduce bacterial loads and mitigate splenic/hepatic pathology. Based on this protection, we then employed integrated epitope mapping, interaction modeling, and alanine-scanning mutagenesis, revealing two linear B-cell epitopes essential for immunoprotection, alongside critical binding residues. This work not only provides foundational evidence for OMP16-based antibody therapy but also reports the first two validated protective OMP16 epitopes. By deciphering molecular mechanisms of these mAbs, we deliver precision epitopes for next-generation multi-epitope vaccines, offering targeted solutions against brucellosis.

