Abstract
Strain-specific low-molecular-weight polysaccharides of different chemical compositions were obtained from cells of nine different wild-type strains of the phototrophic bacterium Rhodopseudomonas gelatinosa. The polysaccharides are free of typical capsule components like hexuronic or aminohexuronic acids but contain (except that of strain 39/2) substantial amounts of phosphorus. A number of unusual o-methyl sugars (2-o-methyl-D-galactose, 2,3-di-o-methyl-D-galactose, 2-o-methyl-L-fucose) as well as 3,6-dideoxy-D-xylo-hexose (abequose) were identified in the R. gelatinosa polysaccharides. o-Methyl and dideoxy sugars however, are typical constituents of O-specific chains of the lipopolysaccharides of gram-negative bacteria (Rhodospirillaceae and Enterobacteriaceae, respectively). Considering both the R-type character of the R. gelatinosa lipopolysaccharides and the occurrence of these strain-specific ETEROPOLYSACCHARIDES, THE ASSUMPTION SEEMS TO BE JUSTIFIED THAT THE LOW-MOLECULAR-WEIGHT POLYSACCHARIDES ARE RELATED TO O-specific chains of lipopolysaccharides (haptens) rather than to capsular or slime antigens. In serological terms the polysaccharides of R. gelatinosa have to be classified as K-antigens. They are able to cover the O-specificity of the respective different strains and confer on them additional specificity which is demonstrable by bacterial agglutination.
MeSH Terms
Cross Reactions
Deoxy Sugars/analysis
Fucose/analysis
Galactose/analysis
Glucosamine/analysis
Hexoses/analysis
Isomerism
Mannose/analysis
Molecular Weight
Phosphorus/analysis
Polysaccharides, Bacterial/analysis,immunology
Rhamnose/analysis
Rhodopseudomonas/analysis,immunology
Serotyping
Species Specificity
Chemicals
Deoxy Sugars
Hexoses
Polysaccharides, Bacterial
Phosphorus
Fucose
abequose
Glucosamine
Mannose
Rhamnose
Galactose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Weckesser J
Mayer H
Drews G
Fromme I
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