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Structural studies of the capsular polysaccharide and lipopolysaccharide O‐antigen of Aeromonas salmonicida strain 80204‐1 produced under in vitro and in vivo growth conditions

Aeromonas salmonicida is a pathogenic aquatic bacterium and the causal agent of furunculosis in salmon. In the course of this study, it was found that when grown in vitro on tryptic soy agar, A. salmonicida strain 80204‐1 produced a capsular polysaccharide with the identical structure to that of the...

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Bibliographic Details
Published in:European journal of biochemistry 2004-11, Vol.271 (22), p.4507-4516
Main Authors: Wang, Zhan, Larocque, Suzon, Vinogradov, Evgeny, Brisson, Jean‐Robert, Dacanay, Andrew, Greenwell, Marshall, Brown, Laura L., Li, Jianjun, Altman, Eleonora
Format: Article
Language:English
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Summary:Aeromonas salmonicida is a pathogenic aquatic bacterium and the causal agent of furunculosis in salmon. In the course of this study, it was found that when grown in vitro on tryptic soy agar, A. salmonicida strain 80204‐1 produced a capsular polysaccharide with the identical structure to that of the lipopolysaccharide O‐chain polysaccharide. A combination of 1D and 2D NMR methods, including a series of 1D analogues of 3D experiments, together with capillary electrophoresis‐electrospray MS (CE‐ES‐MS), compositional and methylation analyses and specific modifications was used to determine the structure of these polysaccharides. Both polymers were shown to be composed of linear trisaccharide repeating units consisting of 2‐acetamido‐2‐deoxy‐d‐galacturonic acid (GalNAcA), 3‐[(N‐acetyl‐L‐alanyl)amido]‐3,6‐dideoxy‐d‐glucose{3‐[(N‐acetyl‐l‐alanyl)amido]‐3‐deoxy‐d‐quinovose, Qui3NAlaNAc} and 2‐acetamido‐2,6‐dideoxy‐d‐glucose (2‐acetamido‐2‐deoxy‐d‐quinovose, QuiNAc) and having the following structure: [→3)‐α‐d‐GalpNAcA‐(1→3)‐β‐d‐QuipNAc‐(1→4)‐β‐d‐Quip3NAlaNAc‐(1‐]n, where GalNAcA is partly presented as an amide and AlaNAc represents N‐acetyl‐l‐alanyl group. CE‐ES‐MS analysis of CPS and O‐chain polysaccharide confirmed that 40% of GalNAcA was present in the amide form. Direct CE‐ES‐MS/MS analysis of in vivo cultured cells confirmed the formation of a novel polysaccharide, a structure also formed in vitro, which was previously undetectable in bacterial cells grown within implants in fish, and in which GalNAcA was fully amidated.
ISSN:0014-2956
1742-464X
1432-1033
1742-4658
DOI:10.1111/j.1432-1033.2004.04410.x