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.

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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