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Structural features of the exocellular polysaccharides of Mycobacterium tuberculosis
Abstract:
The cell envelope which surrounds pathogenic mycobacteria is postulated to be a defence barrier against phagocytic cells and its outermost constituents have a tendency to accumulate in the culture medium. The present work demonstrates that the exocellular material of Mycobacterium tuberculosis contains large amounts of polysaccharides with only traces, if any at all, of lipids. Three types of polysaccharides were purified by anion-exchange and gel-filtration chromatography; all were found to be neutral compounds devoid of acyl substituents. They consisted of D-glucan, D-arabino-D-mannan and D-mannan, which were eluted from gel-filtration columns in positions corresponding to molecular masses of 123, 13 and 4 kDa respectively. Their predominant structural features were determined by the characterization of the per-O-methyl derivatives of enzymic, acetolysis and Smith-degradation products and by 1H- and 13C-n.m.r. spectroscopy of the purified polysaccharides, using mono- and two-dimensional homonuclear chemical-shift correlated spectroscopy and two-dimensional heteronuclear (1H/13C) spectroscopy. The glucan which represented up to 90% of the polysaccharides was composed of repeating units of five or six-->4-alpha-D-Glcp-1--> residues and a -->4-alpha-D-Glcp substituted at position 6 with an alpha-D-Glcp, indicating a glycogen-like highly branched structure not related to the so-called polysaccharide-II previously identified in tuberculin. The arabinomannan consisted of a mannan segment composed of a -->6-alpha-D-Man-1--> core substituted at some positions 2 with an alpha-D-Manp. The arabinan termini of the arabinomannan were found to be extensively capped with mannosyl residues. The possibility that these polysaccharides contribute to the persistence of the tubercle bacillus in the macrophage by molecular mimicry is discussed.
Insights
Mycobacterium tuberculosis cell envelope contains abundant polysaccharides, primarily a branched D-glucan, D-arabino-D-mannan, and D-mannan. These exocellular polysaccharides may aid bacterial survival within macrophages.
Area of Science:
- Microbiology
- Biochemistry
- Immunology
Background:
- The cell envelope of Mycobacterium tuberculosis acts as a protective barrier against host immune cells.
- Extracellular components of M. tuberculosis can accumulate in culture media, offering insights into its composition and function.
Purpose of the Study:
- To characterize the exocellular polysaccharides of Mycobacterium tuberculosis.
- To investigate the structural features and potential roles of these polysaccharides in host-pathogen interactions.
Main Methods:
- Purification of polysaccharides using anion-exchange and gel-filtration chromatography.
- Structural elucidation via methylation analysis, enzymatic degradation, Smith degradation, and various NMR spectroscopy techniques (1H, 13C, 2D-COSY, 2D-HSQC).
Main Results:
- Exocellular material is rich in polysaccharides (D-glucan, D-arabino-D-mannan, D-mannan) with minimal lipid content.
- D-glucan, comprising up to 90% of polysaccharides, exhibits a highly branched, glycogen-like structure.
- D-arabino-D-mannan features a mannan core with extensive mannosyl capping at arabinan termini.
Conclusions:
- The identified polysaccharides possess unique structural characteristics.
- These exocellular polysaccharides may contribute to Mycobacterium tuberculosis persistence in macrophages through molecular mimicry.