[Different forms of a lipopolysaccharide-protein complex from Yersinia pseudotuberculosis]. 1985

I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov

Two forms of lipopolysaccharide-protein complex with buoyant densities of 1,43 and 1,40 g/cm3 were found in the Yersinia pseudotuberculosis cell wall. These forms have the similar monosaccharide, fatty acid and polypeptide compositions, but differ in the length of O-specific chains. The differences in density are stipulated by the different contents of the main components of the complex. Both forms contain the related antigenic determinants but have some differences in the antigenic structure. The ability of the two forms to produce a hybrid form with the intermediate density of 1,41 g/cm3 has been shown.

UI MeSH Term Description Entries
D008070 Lipopolysaccharides Lipid-containing polysaccharides which are endotoxins and important group-specific antigens. They are often derived from the cell wall of gram-negative bacteria and induce immunoglobulin secretion. The lipopolysaccharide molecule consists of three parts: LIPID A, core polysaccharide, and O-specific chains (O ANTIGENS). When derived from Escherichia coli, lipopolysaccharides serve as polyclonal B-cell mitogens commonly used in laboratory immunology. (From Dorland, 28th ed) Lipopolysaccharide,Lipoglycans
D002499 Centrifugation, Density Gradient Separation of particles according to density by employing a gradient of varying densities. At equilibrium each particle settles in the gradient at a point equal to its density. (McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Centrifugations, Density Gradient,Density Gradient Centrifugation,Density Gradient Centrifugations,Gradient Centrifugation, Density,Gradient Centrifugations, Density
D002849 Chromatography, Gas Fractionation of a vaporized sample as a consequence of partition between a mobile gaseous phase and a stationary phase held in a column. Two types are gas-solid chromatography, where the fixed phase is a solid, and gas-liquid, in which the stationary phase is a nonvolatile liquid supported on an inert solid matrix. Chromatography, Gas-Liquid,Gas Chromatography,Chromatographies, Gas,Chromatographies, Gas-Liquid,Chromatography, Gas Liquid,Gas Chromatographies,Gas-Liquid Chromatographies,Gas-Liquid Chromatography
D000939 Epitopes Sites on an antigen that interact with specific antibodies. Antigenic Determinant,Antigenic Determinants,Antigenic Specificity,Epitope,Determinant, Antigenic,Determinants, Antigenic,Specificity, Antigenic
D001426 Bacterial Proteins Proteins found in any species of bacterium. Bacterial Gene Products,Bacterial Gene Proteins,Gene Products, Bacterial,Bacterial Gene Product,Bacterial Gene Protein,Bacterial Protein,Gene Product, Bacterial,Gene Protein, Bacterial,Gene Proteins, Bacterial,Protein, Bacterial,Proteins, Bacterial
D015007 Yersinia A genus of gram-negative, facultatively anaerobic rod- to coccobacillus-shaped bacteria that occurs in a broad spectrum of habitats.
D046911 Macromolecular Substances Compounds and molecular complexes that consist of very large numbers of atoms and are generally over 500 kDa in size. In biological systems macromolecular substances usually can be visualized using ELECTRON MICROSCOPY and are distinguished from ORGANELLES by the lack of a membrane structure. Macromolecular Complexes,Macromolecular Compounds,Macromolecular Compounds and Complexes,Complexes, Macromolecular,Compounds, Macromolecular,Substances, Macromolecular

Related Publications

I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1984, Biofizika,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
September 2003, Biochemistry. Biokhimiia,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
September 2021, Biomolecules,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1983, Mikrobiologicheskii zhurnal,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1979, Microbios,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1985, Biofizika,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1984, Bioorganicheskaia khimiia,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
January 1995, Bioorganicheskaia khimiia,
I M Ermak, and G M Frolova, and T F Solov'eva, and Iu S Ovodov
July 1974, Zhurnal mikrobiologii, epidemiologii i immunobiologii,
Copied contents to your clipboard!