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Human mannose-binding protein inhibits infection of HeLa cells by Chlamydia trachomatis
A F Swanson1, R A Ezekowitz, A Lee
1Department of Pathobiology, University of Washington, Seattle 98195, USA.
Abstract:
The role that collectin (mannose-binding protein) may play in the host's defense against chlamydial infection was investigated. Recombinant human mannose-binding protein was used in the inhibition of cell culture infection by Chlamydia trachomatis (C/TW-3/OT, E/UW-5/Cx, and L2/434/Bu), Chlamydia pneumoniae (AR-39), and Chlamydia psittaci (6BC). Mannose-binding protein (MBP) inhibited infection of all chlamydial strains by at least 50% at 0.098 microg/ml for TW-3 and UW-5, and at 6.25 microg/ml for 434, AR-39, and 6BC. The ability of MBP to inhibit infection with strain L2 was not affected by supplementation with complement or addition of an L2-specific neutralizing monoclonal antibody. Enzyme-linked immunosorbent assay and dot blot analyses showed MBP bound to the surface of the organism to exert inhibition, which appeared to block the attachment of radiolabeled organisms to HeLa cells. Immunoblotting and affinity chromatography indicated that MBP binds to the 40-kDa glycoprotein (the major outer membrane protein) on the outer surface of the chlamydial elementary body. Hapten inhibition assays with monosaccharides and defined oligosaccharides showed that the inhibitory effects of MBP were abrogated by mannose or high-mannose type oligomannose-oligosaccharide. The latter carbohydrate is the ligand of the 40-kDa glycoprotein of C. trachomatis L2, which is known to mediate attachment, suggesting that the MBP binds to high mannose moieties on the surface of chlamydial organisms. These results suggest that MBP plays a role in first-line host defense against chlamydial infection in humans.
Insights
Mannose-binding protein (MBP) inhibits chlamydial infections by binding to the major outer membrane protein on elementary bodies. This interaction blocks bacterial attachment, suggesting MBP is crucial for initial host defense against Chlamydia.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Chlamydial infections pose a significant public health challenge.
- The host immune system's early defense mechanisms against Chlamydia are not fully understood.
Purpose of the Study:
- To investigate the role of mannose-binding protein (MBP) in host defense against various Chlamydia species.
- To elucidate the mechanism by which MBP inhibits chlamydial infection.
Main Methods:
- Recombinant human MBP was used to inhibit cell culture infections by Chlamydia trachomatis, C. pneumoniae, and C. psittaci.
- Enzyme-linked immunosorbent assay, dot blot, immunoblotting, and affinity chromatography were employed to analyze MBP-chlamydia interactions.
- Hapten inhibition assays were performed using monosaccharides and oligosaccharides.
Main Results:
- MBP significantly inhibited infection by all tested Chlamydia strains.
- MBP was shown to bind to the 40-kDa glycoprotein (major outer membrane protein) on the chlamydial elementary body surface.
- Inhibition was mediated by MBP binding to high mannose moieties, blocking bacterial attachment to host cells.
Conclusions:
- Mannose-binding protein plays a critical role in the first-line host defense against Chlamydia.
- MBP's ability to bind chlamydial surface glycoproteins is a key mechanism for preventing infection.
- Further research into MBP's role could lead to novel therapeutic strategies against chlamydial infections.
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