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Toxoplasma modifies macrophage phagosomes by secretion of a vesicular network rich in surface proteins
Abstract:
Modification of macrophage phagosomes begins shortly after formation as Toxoplasma cells secrete membranous vesicles that form a reticulate network within the vacuole. The Toxoplasma-modified compartments then resist normal endocytic processing and digestion. We have used the pronounced Ca++-dependent stability of the intraphagosomal membrane (IPM) network to purify and characterize the structural proteins of this assembly. In addition to the structural matrix, Toxoplasma secretes a discrete set of soluble proteins, including a newly described 22-kD calcium-binding protein. The IPM network adheres to intact Toxoplasma cells after host cell lysis in the presence of 1 mM Ca++; however, the network readily disperses in calcium-free buffer and was purified as vesicles that sedimented at 100,000 g. Purified IPM vesicles were specifically recognized by immune sera from mice with chronic Toxoplasma infection and consisted primarily of a 30-kD protein when analyzed by SDS PAGE. IPM network proteins share a major antigenic component located on the surface of extracellular Toxoplasma cells as shown by immunoperoxidase electron microscopy using a polyclonal antibody prepared against the IPM vesicles. Moreover, in Toxoplasma-infected macrophages, anti-IMP antibody confirmed that the extensive IPM array contains proteins also found on the Toxoplasma cell surface. Our results indicate the IMP network represents a unique structural modification of the phagosome comprised in part of Toxoplasma surface proteins.
Insights
Toxoplasma gondii modifies macrophage phagosomes with a unique membrane network. This network, rich in specific proteins, resists digestion and contains Toxoplasma surface proteins, aiding parasite survival.
Area of Science:
- Immunology
- Cell Biology
- Parasitology
Background:
- Macrophage phagosomes are crucial for pathogen clearance.
- Toxoplasma gondii actively manipulates host cell processes, including phagosome maturation.
Purpose of the Study:
- To characterize the structural proteins of the Toxoplasma-modified phagosomal membrane (IPM) network.
- To investigate the origin and composition of the IPM network.
Main Methods:
- Purification of IPM vesicles using calcium-dependent stability.
- Protein analysis via SDS-PAGE.
- Immunological characterization using antibodies against IPM vesicles and Toxoplasma surface proteins.
- Immunoperoxidase electron microscopy.
Main Results:
- The IPM network is a reticulate structure within the phagosome, resistant to digestion.
- Purified IPM vesicles are primarily composed of a 30-kD protein.
- IPM proteins share antigenic components with the surface of extracellular Toxoplasma.
- Antibodies against IPM proteins recognize structures on both the IPM network and the Toxoplasma cell surface.
Conclusions:
- The IPM network is a unique modification of the phagosome by Toxoplasma.
- The IPM network incorporates Toxoplasma surface proteins, suggesting a mechanism for immune evasion or nutrient acquisition.
- The calcium-dependent stability of the IPM network facilitates its study.