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Lipophosphoglycan blocks attachment of Leishmania major amastigotes to macrophages
M Kelleher1, S F Moody, P Mirabile
1Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria, Australia.
Abstract:
Promastigotes of the intracellular protozoan parasite Leishmania major invade mononuclear phagocytes by a direct interaction between the cell surface lipophosphoglycan found on all Leishmania species and macrophage receptors. This interaction is mediated by phosphoglycan repeats containing oligomers of beta (1-3)Gal residues specific to L. major. We show here that although amastigotes also use lipophosphoglycan to bind to both primary macrophages and a cell line, this interaction is independent of the beta (1-3)Gal residues employed by promastigotes. Binding of amastigotes to macrophages could be blocked by intact lipophosphoglycan from L. major amastigotes as well as by lipophosphoglycan from promastigotes of several other Leishmania species, suggesting involvement of a conserved domain. Binding of amastigotes to macrophages could be blocked significantly by the monoclonal antibody WIC 108.3, directed to the lipophosphoglycan backbone. The glycan core of lipophosphoglycan could also inhibit attachment of amastigotes, but to a considerably lesser extent. The glycan core structure is also present in the type 2 glycoinositolphospholipids which are expressed on the surface of amastigotes at 100-fold-higher levels than lipophosphoglycan. However, their inhibitory effect could not be increased even when they were used at a 300-fold-higher concentration than lipophosphoglycan, indicating that lipophosphoglycan is the major macrophage-binding molecule on amastigotes of L. major. In the presence of complement, the attachment of amastigotes to macrophages was not altered, suggesting that lipophosphoglycan interacts directly with macrophage receptors.
Insights
Leishmania amastigotes bind macrophages using lipophosphoglycan (LPG) via a conserved domain, distinct from promastigote binding mechanisms. This interaction is independent of specific beta (1-3)Gal residues, highlighting LPG as a key macrophage-binding molecule.
Area of Science:
- Parasitology
- Immunology
- Molecular Biology
Background:
- Leishmania major infects mononuclear phagocytes through surface lipophosphoglycan (LPG) binding to macrophage receptors.
- Promastigote invasion involves specific beta (1-3)Gal residues in LPG, unique to L. major.
Purpose of the Study:
- To investigate the mechanism of amastigote binding to macrophages.
- To identify the specific molecules and domains involved in Leishmania amastigote-macrophage interactions.
Main Methods:
- Utilized intact lipophosphoglycan (LPG) from L. major amastigotes and promastigotes of other species to block macrophage binding.
- Employed monoclonal antibody WIC 108.3 targeting the LPG backbone.
- Tested the inhibitory effect of the LPG glycan core and type 2 glycoinositolphospholipids.
Main Results:
- Amastigote binding to macrophages is mediated by LPG but is independent of the beta (1-3)Gal residues used by promastigotes.
- Intact LPG from various Leishmania species and the LPG backbone significantly blocked amastigote attachment, indicating a conserved binding domain.
- The LPG glycan core and type 2 glycoinositolphospholipids showed limited inhibition, confirming LPG as the primary binding molecule on amastigotes.
Conclusions:
- Leishmania amastigotes utilize a conserved domain on LPG for macrophage binding, differing from promastigote mechanisms.
- LPG is the principal molecule mediating amastigote attachment to macrophages.
- Complement does not influence amastigote attachment, suggesting direct LPG-macrophage receptor interaction.