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Updated: Aug 12, 2026

A Genetic Screen to Isolate Toxoplasma gondii Host-cell Egress Mutants
Published on: February 8, 2012
The toxoplasma proteins MIC2 and M2AP form a hexameric complex necessary for intracellular survival
Travis J Jewett1, L David Sibley
1Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Abstract:
Toxoplasma gondii parasites gain entry into host cells through a process that depends on apically stored adhesins that are strategically released during invasion. One of these adhesins, microneme protein 2 (MIC2), is a type one transmembrane protein that binds to an accessory protein known as MIC2-associated protein (M2AP). Together the MIC2 x M2AP complex participates in host cell attachment and invasion. The short cytoplasmic C-domain of MIC2 is implicated in protein trafficking and mediating an association with the parasite cytoskeleton. To define the role of the cytoplasmic domain of MIC2, proteins lacking the C-domain were expressed in transgenic T. gondii. Surprisingly, protein trafficking and secretion were not affected. We hypothesized that mutant mic2 lacking the C-domain might be escorted to the micronemes by association with endogenous wild-type MIC2 possessing functional transmembrane and cytoplasmic domains. To investigate this interaction, native blue gels and gel filtration were employed to identify a stable macromolecular MIC2 x M2AP complex of approximately 450 kDa. Our findings reveal that MIC2 and M2AP proteins form stable hexamers consisting of three alphabeta dimers. Resolution of this complex has implications for how MIC2 x M2AP associates with host cell receptors and the cytoskeleton to facilitate parasite motility and invasion.
Insights
Toxoplasma gondii uses the MIC2 x M2AP complex for host cell invasion. This study reveals MIC2 and M2AP form stable hexamers, impacting parasite motility and host cell attachment.
Area of Science:
- Parasitology
- Cell Biology
- Molecular Biology
Background:
- Toxoplasma gondii invasion relies on apically secreted adhesins.
- Microneme protein 2 (MIC2) and MIC2-associated protein (M2AP) form a complex crucial for invasion.
- The cytoplasmic C-domain of MIC2 is thought to mediate protein trafficking and cytoskeletal association.
Purpose of the Study:
- To investigate the role of the MIC2 cytoplasmic C-domain in T. gondii invasion.
- To explore the interaction between MIC2 and M2AP and characterize the MIC2 x M2AP complex.
Main Methods:
- Expression of transgenic T. gondii lacking the MIC2 C-domain.
- Native blue gel electrophoresis.
- Gel filtration chromatography.
Main Results:
- Deletion of the MIC2 C-domain did not affect protein trafficking or secretion.
- A stable macromolecular complex of MIC2 x M2AP (approx. 450 kDa) was identified.
- The MIC2 x M2AP complex exists as stable hexamers composed of three alpha-beta dimers.
Conclusions:
- The MIC2 cytoplasmic domain is not essential for trafficking or secretion.
- MIC2 and M2AP form a stable hexameric complex, suggesting a structural role.
- Understanding the MIC2 x M2AP complex structure is key to elucidating T. gondii invasion mechanisms.
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