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Extracellular and surface-exposed polysaccharides of non-tuberculous mycobacteria
Anne Lemassu1, Annick Ortalo-Magné1, Fabienne Bardou1
1Institut Pharmacologie et de Biologie Structurale du CNRS and Université Paul Sabatier, 118 route de Narbonne, 31062 Toulouse Cédex, France.
Abstract:
We studied the outermost constituents of the cell envelopes, which are involved in the interaction between the bacilli and the host cells, of five pathogenic and non-pathogenic mycobacterial species for comparison with those we have previously characterized from M. tuberculosis. The extracellular materials (ECMs) were isolated by ethanol precipitation and compared to the surface-exposed materials (SXMs) extracted by mechanical means. The materials from both sources were composed almost exclusively of polysaccharides and proteins. Two groups of mycobacteria were clearly distinguishable. The first group comprised the pathogenic species M. kansasii which produced large amounts of ECM, the glycosyl composition of which was similar to that of the SXM. The second group comprised M. avium and the non-pathogenic strains of M. gastri, M. phlei and M. smegmatis which produced small amounts of ECK This latter group could be subdivided into those which produced carbohydrate-rich ECM (M. avium and M. gastri) and those forming protein-rich ECM (M. phlei and M. smegmatis), a classification that correlated with the difference in the growth rate of the two subgroups. The glycosyl composition of the ECM of a given species was qualitatively similar to that of the SXM, except for M. avium and M. phlei whose SXM were devoid of arabinose. In addition to glucose, mannose and arabinose, xylose was detected in the hydrolysis products of the ECM and SXM of M. smegmatis, the SXM of M. phlei and the ECM of some batches of M. avium. The polysaccharide constituents of the ECM and SXM of the different mycobacteria were purified by anion-exchange and gel-filtration chromatography; all were found to be neutral compounds devoid of acyl substituents. The extracellular polysaccharides consisted of high-molecular-mass glycogen-like glucans, arabinomannans and mannans, structurally similar to the corresponding substances previously characterized from the capsule of M. tuberculosis. The same types of polysaccharides were characterized from the SXM of all the strains, except M. avium and M. phlei which were devoid of arabinomannans. This study questions the unique and universal representation of the mycobacterial cell envelope and the existence of the so-called acidic polysaccharide-rich outer layer.
Insights
This study compares extracellular and surface-exposed materials from various mycobacteria. Findings reveal distinct polysaccharide and protein profiles, challenging uniform models of the mycobacterial cell envelope.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- The cell envelope's outermost layers mediate host-pathogen interactions in mycobacteria.
- Previous characterization focused on *M. tuberculosis*, necessitating comparative studies across species.
Purpose of the Study:
- To compare extracellular materials (ECMs) and surface-exposed materials (SXMs) from five pathogenic and non-pathogenic mycobacterial species.
- To analyze the polysaccharide and protein composition of these outermost cell envelope constituents.
- To investigate variations in cell envelope structure across different mycobacterial species.
Main Methods:
- Isolation of ECMs via ethanol precipitation and SXMs via mechanical extraction.
- Compositional analysis of isolated materials, focusing on polysaccharides and proteins.
- Glycosyl composition analysis using chromatography (anion-exchange, gel-filtration) and hydrolysis.
- Structural characterization of polysaccharide constituents.
Main Results:
- Mycobacterial species were grouped based on ECM production (high vs. low) and composition (carbohydrate-rich vs. protein-rich).
- Pathogenic *M. kansasii* produced abundant ECM similar to its SXM, while other species produced less.
- Extracellular polysaccharides included glycogen-like glucans, arabinomannans, and mannans, structurally similar to those in *M. tuberculosis*.
Conclusions:
- Significant variations exist in the outermost cell envelope composition among mycobacterial species.
- The study challenges the concept of a unique, universal mycobacterial cell envelope structure.
- The existence of a universally acidic polysaccharide-rich outer layer in mycobacteria is questioned.