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Updated: Aug 6, 2026

A Genetic Screen to Isolate Toxoplasma gondii Host-cell Egress Mutants
Published on: February 8, 2012
Genome-wide CRISPR screen identifies genes synthetically lethal with GRA17, a nutrient channel encoding gene in
Tatiana C Paredes-Santos1, Mebratu A Bitew1, Christopher Swale2
1Department of Pathology, Microbiology and Immunology, School of Veterinary Medicine, University of California Davis, Davis, California, United States of America.
Abstract:
Toxoplasma gondii is a parasite that replicates within a specialized compartment called the parasitophorous vacuole (PV), which is surrounded by the PV membrane (PVM). To obtain essential nutrients, Toxoplasma must transport molecules across the PVM, a process mediated by the secreted parasite proteins GRA17 and GRA23. These proteins form pores in the PVM through which small molecules can diffuse in and out of the PV. GRA17 and GRA23 are synthetically lethal, suggesting that at least one pore type is essential for parasite survival. In the 'nutrient sensitized' Δgra17 strain it is likely that other Toxoplasma genes become essential, because they mediate nutrient acquisition from the host or are involved in the trafficking of GRA23 to the PVM. To identify these genes, a genome-wide loss-of-function screen was performed in wild-type and Δgra17 parasites, which identified multiple genes that were synthetically sick/lethal with GRA17. Several of these genes were involved in the correct localization of GRAs, including GRA17/GRA23, to the PVM. One of the top hits, GRA72, was predicted to form a pore on the PVM, and its deletion led to the formation of enlarged "bubble vacuoles" with reduced PVM small molecule permeability, similar to what was previously observed for Δgra17 parasites. Furthermore, Δgra72 parasites had reduced in vitro growth and virulence in mice. These findings suggest that in the absence of GRA17, other genes become essential, likely because they play a role in the proper localization of GRA23 (and other GRAs) or because they determine host-derived nutrient acquisition at the PVM.
Insights
Toxoplasma gondii requires proteins GRA17 and GRA23 to form pores in the parasitophorous vacuole membrane for nutrient transport. A screen identified GRA72 as essential for pore function, impacting parasite growth and virulence.
Area of Science:
- Parasitology
- Molecular Biology
- Cell Biology
Background:
- Toxoplasma gondii replicates within a parasitophorous vacuole (PV).
- Nutrient acquisition across the PV membrane (PVM) is crucial for parasite survival.
- Secreted proteins GRA17 and GRA23 form PVM pores for molecule transport.
Purpose of the Study:
- To identify genes essential for Toxoplasma gondii survival in the absence of GRA17.
- To understand the roles of other proteins in PVM function and nutrient acquisition.
Main Methods:
- Genome-wide loss-of-function screen in wild-type and Δgra17 Toxoplasma gondii strains.
- Analysis of gene function related to GRA localization and PVM permeability.
- Assessment of in vitro growth and mouse virulence for knockout strains.
Main Results:
- Multiple genes were found to be synthetically sick/lethal with GRA17.
- GRA72 was identified as a key protein forming PVM pores.
- Δgra72 mutants exhibited "bubble vacuoles," reduced PVM permeability, impaired growth, and decreased virulence.
Conclusions:
- GRA72 is essential for PVM pore formation and function in Toxoplasma gondii.
- Other identified genes are critical for GRA localization or host nutrient uptake at the PVM.
- These findings reveal novel targets for controlling Toxoplasma gondii infection.
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