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Acanthamoeba castellanii: characterization of an adhesin molecule
M J Kennett1, R R Hook, C L Franklin
1Department of Veterinary Pathobiology, College of Veterinary Medicine, University of Missouri-Columbia, Columbia, Missouri, 65211, USA.
Abstract:
Acanthamoeba castellanii is a free-living protozoan that causes keratitis in humans and has been associated with pneumonia and granulomatous amebic encephalitis in dogs, sheep, and other species. Adherence of the Acanthamoeba to epithelial cells is critical to the pathogenesis of this disease. In this study, several mouse monoclonal antibodies (MAb) generated to whole Acanthamoeba trophozoites identified surface membrane epitopes by ELISA and IFA. Nine antibodies inhibited adherence of [(35)S]-methionine-labeled Acanthamoeba trophozoites to hamster corneal epithelial cells by 27-90%. Sodium periodate treatment, but not proteinase K digestion, of whole Acanthamoeba destroyed epitopes recognized by adherence-inhibiting antibodies such as MAb 7H6, suggesting that the adherence epitopes are carbohydrates. Other antibodies, MAb 2A8 for example, recognized surface membrane peptide epitopes that were proteinase K sensitive and sodium periodate resistant. Purified MAb 2A8 was used in an antigen-capture ELISA with peroxidase-labeled MAb 7H6 and demonstrated that the carbohydrate adhesion molecule was linked to the peptide recognized by MAb 2A8. Both MAbs 7H6 and 2A8 recognized a >207-kDa band on a Western blot of eluant from a MAb 2A8 immunoaffinity column, confirming that MAb 7H6 and MAb 2A8 recognize different epitopes on the same adherence molecule. MAbs 7H6 and 2A8 also identified the adhesion molecule in soluble Acanthamoeba membrane preparations and MAb 2A8 immunoaffinity column eluant by ELISA and Western blot. Neither of these antibodies were inhibited from binding to whole trophozoites nor membrane extracts by mannose or mannan in competitive binding assays. When our Acanthamoeba membrane preparations were electrophoresed and immunoblotted with alpha-d-mannosylated-biotin albumin, no bands were recognized in the >207 kDa range by our adherence-associated antibodies. These results suggest that the Acanthamoeba adhesin is not identical to the mannose binding protein of Acanthamoeba but rather is a distinct surface membrane glycoprotein.
Insights
Researchers identified a novel Acanthamoeba adhesion molecule crucial for pathogenesis. This glycoprotein, recognized by specific monoclonal antibodies, is key to Acanthamoeba binding to host cells, offering potential therapeutic targets.
Area of Science:
- Microbiology
- Immunology
- Parasitology
Background:
- Acanthamoeba castellanii causes serious infections like keratitis and encephalitis.
- Acanthamoeba adherence to host cells is vital for disease development.
- Understanding the adherence mechanism is critical for developing treatments.
Purpose of the Study:
- To identify and characterize the surface molecules involved in Acanthamoeba adherence to host cells.
- To investigate the nature of the epitopes recognized by adherence-inhibiting monoclonal antibodies.
Main Methods:
- Generation and screening of mouse monoclonal antibodies (MAbs) against Acanthamoeba trophozoites.
- Enzyme-linked immunosorbent assay (ELISA) and immunofluorescence assay (IFA) to identify surface epitopes.
- Inhibition assays using labeled Acanthamoeba and host cells.
- Biochemical characterization using periodate treatment, proteinase K digestion, Western blotting, and immunoaffinity chromatography.
Main Results:
- Several MAbs inhibited Acanthamoeba adherence to corneal epithelial cells.
- Adherence-inhibiting epitopes were identified as both carbohydrate (recognized by MAb 7H6) and peptide (recognized by MAb 2A8).
- Both MAbs recognized distinct epitopes on the same >207 kDa surface membrane glycoprotein.
- The identified adhesin is not the mannose-binding protein of Acanthamoeba.
Conclusions:
- Acanthamoeba adherence involves a distinct surface membrane glycoprotein with both carbohydrate and peptide epitopes.
- This glycoprotein is a critical virulence factor and a potential target for therapeutic intervention.
- Further research into this adhesin could lead to novel strategies for treating Acanthamoeba infections.
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