1.In vivo morphological and antigenic characteristics of Photobacterium damselae subsp. piscicida.
Tae S JUNG ; Kim D THOMPSON ; Donatella VOLPATTI ; Marco GALEOTTI ; A ADAMS
Journal of Veterinary Science 2008;9(2):169-175
The present study was conducted to examine the morphology and antigenicity of Photobacterium damselae subsp. piscicida by culturing the bacterium in vivo in the peritoneal cavity of sea bass (Dicentrarchus labrax) within dialysis bags with either a low molecular weight (LMW) cut-off of 25 kDa or a high molecular weight (HMW) cut-off of 300 kDa. Differences were observed in the growth rate between the bacteria cultured in vivo or in vitro. Bacteria cultured in vivo were smaller and produced a capsular layer, which was more prominent in bacteria cultured in the HMW bag. Antigenicity was examined by Western blot analysis using sera from sea bass injected with live Ph. d. subsp. piscicida. The sera recognised bands at 45 and 20 kDa in bacteria cultured in vivo in the LMW bag. Bacteria cultured in vivo in the HMW bag did not express the 45 kDa band when whole cell extracts were examined, although the antigen was present in their extracellular products. In addition, these bacteria had a band at 18 kDa rather than 20 kDa. Differences in glycoprotein were also evident between bacteria cultured in vitro and in vivo. Bacteria cultured in vitro in LMW and HMW bags displayed a single 26 kDa band. Bacteria cultured in the LMW bag in vivo displayed bands at 26 and 27 kDa, while bacteria cultured in vivo in the HMW bag possessed only the 27 kDa band. These bands may represent sialic acid. The significance of the changes observed in the bacterium's structure and antigenicity when cultured in vivo is discussed.
Animals
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Antigenic Variation/*genetics
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Antigens, Bacterial/genetics/*immunology
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Bass/*immunology/microbiology
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Blotting, Western
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Carbohydrates/analysis
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Electrophoresis, Polyacrylamide Gel
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Membranes, Artificial
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Microscopy, Electron, Transmission
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N-Acetylneuraminic Acid/genetics/*immunology
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Photobacterium/genetics/*immunology/ultrastructure
2.Enzymatic N-glycan analysis of 31 kDa molecule in plerocercoid of Spirometra mansoni (sparganum) and its antigenicity after chemical oxidation.
Young Bae CHUNG ; Yoon KONG ; Hyun Jong YANG
The Korean Journal of Parasitology 2004;42(2):57-60
A highly specific antigenic protein of 31 kDa from plerocercoid of Spirometra mansoni (sparganum) was obtained by gelatin affinity and Mono Q anion-exchange column chromatography. The purified 31 kDa protein was subjected to N-glycan enzymatic digestion for structural analysis. The relative electrophoretic mobility was analyzed by SDS-PAGE, before and after digestion. On SDS-PAGE after enzymatic digestion, the 31 kDa protein showed a molecular shift of approximately 2 kDa, which indicated the possession of complex N-linked oligosaccharides (N-glycosidase F sensitive) but not of high-mannose oligosaccharides (endo-beta-N-acetylglucosaminidase H, non-sensitive). Chemically periodated 31 kDa protein showed statistically non-significant changes with human sparganosis sera by enzyme linked immunosorbent assay (ELISA). Therefore, the dominant epitopes of the 31 kDa molecule in human sparganosis were found to be mainly polypeptide, while N-glycans of the antigenic molecule in sparganum was minimal in anti-carbohydrate antibody production.
Animals
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Antigens, Helminth/*analysis/chemistry/immunology/metabolism
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Carbohydrates/analysis/immunology
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Chromatography, Affinity
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Chromatography, Ion Exchange
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Electrophoresis, Polyacrylamide Gel
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Enzyme-Linked Immunosorbent Assay
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Epitopes/analysis/immunology
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Glucosaminidase/metabolism
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Human
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Peptide-N4- (N-acetyl-beta-glucosaminyl) Asparagine Amidase/metabolism
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Periodic Acid/chemistry
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Sparganosis/*parasitology
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Sparganum/immunology/metabolism
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Spirometra/immunology/*metabolism
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Support, Non-U.S. Gov't