Search PubMedSearch

PubMed · 3745941

Polymorphonuclear leukocytes, complement, and Trichophyton rubrum.

Abstract

Trichophyton rubrum can activate complement. In order to assess the role of complement in host defense, fresh human serum was incubated with fungus. Factors were produced which were chemotactic for polymorphonuclear leukocytes (PMNL), but only if complement activation was allowed. This suggests that the chemotactic factor or factors were derived from complement. Incubation of T. rubrum with fresh serum did not prevent fungal growth on subsequent culture, but did inhibit incorporation of radiolabeled N-acetylglucosoamine. The interaction of PMNL and fungi was studied, and the role of complement as a mediator was assessed. PMNL adhered well to fungi provided that the fungal hyphae had been preincubated with fresh human serum to provide complement opsonins. Opsonized and unopsonized fungi both stimulated a respiratory burst in normal PMNL as measured by chemiluminescence, but the burst was generated much faster with opsonized hyphae. Although hyphae with adherent PMNL subsequently proliferated in culture, the incorporation of N-acetylglucosoamine was inhibited 96% when the hyphae were opsonized with fresh serum and then incubated with PMNL. Inhibition was also observed with unopsonized fungi, but to a lesser degree. Varying the ratio of PMNL to hyphae showed that inhibition by PMNL was far more efficient if hyphae were opsonized. In contrast to hyphae, opsonized fungal spores were killed by PMNL so that no growth was observed in subsequent cultures. This killing was not observed if PMNL were omitted or if spores were preincubated with heat-inactivated serum rather than fresh serum. Activation of complement apparently opsonizes the spores so that they can be ingested and killed by viable PMNL. Contents of disrupted PMNL failed to inhibit fungal growth. Complement and PMNL may aid the host in defending itself against infection by dermatophytes.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M V Dahl, R Carpenter. 1986. Polymorphonuclear leukocytes, complement, and Trichophyton rubrum.. https://doi.org/10.1111/1523-1747.ep12284169

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Characterization of Staphylococcus aureus cell wall glycan strands, evidence for a new beta-N-acetylglucosaminidase activity.

Using sequential digestion with the glycyl-glycine endopeptidase lysostaphin followed by the pneumococcal N-acetylmuramyl-L-alanine amidase (amidase), the glycan strands of the peptidoglycan of Staphylococcus aureus were purified and analyzed by a combination of reverse-phase-high pressure liquid chromatography (HPLC) and mass spectrometry. Reverse-phase-HPLC resolved the glycan strands to a family of major peaks, which represented oligosaccharides composed of repeating disaccharide units (N-acetylglucosamine-[beta-1, 4]-N-acetylmuramic acid) with different degrees of polymerization and terminating with N-acetylmuramic acid residues at the reducing ends. The method allowed separation of strands up to 23-26 disaccharide units with a predominant length between 3 and 10 and an average degree of polymerization of approximately 6. Glycan strands with a higher degree of polymerization (>26 disaccharide units) represented 10-15% of the total UV absorbing glycan material. A unique feature of the staphylococcal glycan strands was the presence of minor satellite peaks that were present throughout the HPLC elution profile eluting either just prior or shortly after the major oligosaccharide peaks. A number of observations including mass spectrometric analysis suggest that the satellites are the products of an N-acetylglucosaminidase activity that differs from the atl gene product and that appears to be involved with modification of the glycan strand structure.

Acetylglucosamine

Synthesis of 4-deoxy analogues of 2-acetamido-2-deoxy-D-glucose and 2-acetamido-2-deoxy-D-xylose and their effects on glycoconjugate biosynthesis.

4-Deoxy analogues of 2-acetamido-2-deoxy-D-glucose and 2-acetamido-2-deoxy-D-xylose were synthesized and evaluated as inhibitors of glycoconjugate biosynthesis. Methyl 2-acetamido-2,4-dideoxy-beta-D-xylo-hexopyranoside (11) showed a reduction in [3H]GlcN and [14C]Leu incorporation into hepatocyte cellular glycoconjugates by 89 and 88%, of the control cells, respectively, at 20 mM, whereas the free sugars, 2-acetamido-2,4-dideoxy-alpha,beta-D-xylo-hexopyranoses (15), showed a reduction of [3H]GlcN and [14C]Leu incorporation by 75 and 64%, respectively, at 20 mM. The acetylated analogues of 11 and 15, namely methyl 2-acetamido-3,6-di-O-acetyl-2,4-dideoxy-beta-D-xylo-hexopyranoside and 2-acetamido-1,3,6-tri-O-acetyl-2,4-dideoxy-alpha,beta-D-xylo-hexopyra noses, showed a greater inhibition of [3H]GlcN and [14C]Leu incorporation at 1 mM compared with their non-acetylated counterparts, but were toxic to hepatocytes at concentrations of 10 and 20 mM. Corresponding derivatives of 2-acetamido-2,4-dideoxy-L-threo-pentopyranose showed no biological effect up to 20 mM, suggesting that the C-6 substituent is important for the biological activity.

Acetylglucosamine

Studies on the skeletal cell wall of the cystocarpic stage of the red seaweed Iridaea undulosa B. Part II. Fractionation of the cell wall and methylation analysis of the inner core-fibrillar polysaccharides.

In order to determine the structure of the fibrillar cell wall, the material isolated from cystocarpic thalli of the red seaweed Iridaea undulosa was fractionated using different media. While classical methods produced a scarce solubilization of material, the use of lithium salts in polar aprotic solvents (dimethylsulfoxide or N, N-dimethylacetamide), had successfully extracted higher amounts of material. The final residue from the Li(+)/DMSO extraction contains cellulose and a mannan, while that from the Li(+)/DMAc extraction contains only cellulose and traces of a galactan. Methylation analyses of both residues confirm the presence of those polysaccharides, and shows that the mannan is (1-->4)-linked. Treatment with proteases suggests that the protein is efficiently shielded from digestion. All the extracts and residues contain major amounts of (glyco)proteins and/or proteins, in agreement with a previous suggestion that they are of major importance in the structure of the cell wall.

Acetylglucosamine