Tracheobronchial mucin receptor for Pseudomonas aeruginosa: predominance of amino sugars in binding sites
- 1 May 1985
- journal article
- research article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 48 (2), 331-335
- https://doi.org/10.1128/iai.48.2.331-335.1985
Abstract
Pseudomonas aeruginosa, a common respiratory tract colonizer and pathogen, adheres to injured tracheal cells and to tracheobronchial mucin. These phenomena suggest that there are specific receptors for this organism in the respiratory tract. The receptor on injured tracheal cells contains n-acetylneuraminic acid as the principal sugar, but the structure of the receptor in mucin has not been described. Using a microtiter plate assay to study bacterial adherence to mucin, we have partially characterized the mucin receptor for P. aeruginosa. The receptor for both nonmucoid and mucoid strains is sensitive to periodate oxidation, suggesting that it is carbohydrate in nature, and the amino sugars n-acetylglucosamine and n-acetylneuraminic acid inhibited the adherence of both types of strains. Nonmucoid strains were more sensitive to inhibition by n-acetylneuraminic acid than to inhibition by n-acetylglucosamine, but the mucoid strains varied in their sensitivities to inhibition by each amino sugar. Preincubation of mucin with heat-inactivated influenza A virus (which binds to neuraminic acid) significantly reduced the adherence of P. aeruginosa. Treatment of mucin with Clostridium perfringens neuraminidase also reduced bacterial adherence significantly. Treatment of mucin with pronase did not affect adherence. Our results suggest that n-acetylglucosamine and n-acetylneuraminic acid are important constituents of the binding sites for P. aeruginosa on human tracheobronchial mucin.This publication has 25 references indexed in Scilit:
- Identification of an active disaccharide unit of a glycoconjugate receptor for pneumococci attaching to human pharyngeal epithelial cells.The Journal of Experimental Medicine, 1983
- Lectins: Their Multiple Endogenous Cellular FunctionsAnnual Review of Biochemistry, 1981
- Bacterial Adherence: Adhesin-Receptor Interactions Mediating the Attachment of Bacteria to Mucosal SurfacesThe Journal of Infectious Diseases, 1981
- Sugar‐Lectin Interactions: How Does Wheat‐Germ Agglutinin Bind Sialoglycoconjugates?European Journal of Biochemistry, 1980
- Prevention of Colonization of the Urinary Tract of Mice with Escherichia coli by Blocking of Bacterial Adherence with Methyl -D-MannopyranosideThe Journal of Infectious Diseases, 1979
- The role of disulfide bonds in maintaining the gel structure of bronchial mucusArchives of Biochemistry and Biophysics, 1976
- Isolation and Characterisation of Glycoproteins from SputumEuropean Journal of Biochemistry, 1974
- The Biochemistry of Plant Lectins (Phytohemagglutinins)Annual Review of Biochemistry, 1973
- Protection against Enteric Disease caused by Escherichia coli–a Model for Vaccination with a Virulence Determinant?Nature, 1973
- Étude des structures fibrillaires de la sécrétion bronchique humaineClinica Chimica Acta; International Journal of Clinical Chemistry, 1967