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Updated: Nov 23, 2025

Toxoplasma gondii Cyst Wall Formation in Activated Bone Marrow-derived Macrophages and Bradyzoite Conditions
Published on: August 12, 2010
Formation of mRNP granules in Toxoplasma gondii during the lytic cycle
Scott Roscoe1, Emad Manni1, Mikayla Roberts1
1Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, N9B3P4, Canada.
Abstract:
Two poly(A) binding proteins (PABPs) of Toxoplasma gondii, were identified and characterized. They were named TgPABPC and TgPABPN as they were found to localize in the cytoplasm and nucleus respectively. TgPABPC, which colocalizes with mRNA granules, is therefore used as a cellular marker of mRNP granules. We detected that the formation of mRNP granules was independent of polymerized microtubules, and that the granules were distributed stochastically within the cytosol. Formation of mRNP granules was found to occur prior to parasite egress when a Ca2+ ionophore is used to induce egress. It was also found that maturation of mRNP granules could be described as a two-phase process. First, prior to host cell lysis, mRNP granules were formed rapidly within the cytosol. Second, the mRNP granule load was reduced within 10 min post egress. To investigate the link between translational state and mRNP granule formation, treatments with salubrinal, nutrient deprivation, and pH stress were used. While salubrinal induced granule formation in tachyzoites, nutrient starvation and pH stress showed no induction effect on mRNP granule formation. Interestingly, salubrinal treatment in bradyzoites did not induce RNP granule formation, thus suggesting that mRNP granule formation is not a ubiquitous response or directly related to translational repression. Instead, mRNP granule formation is likely a response to the rapid increase in non-translating RNA brought on by sudden changes in translational state.
Insights
Toxoplasma gondii has two poly(A) binding proteins (PABPs), TgPABPC and TgPABPN, involved in mRNA regulation. mRNP granule formation is linked to translational state changes, not just translational repression.
Area of Science:
- Molecular Parasitology
- RNA Biology
- Cellular Stress Response
Background:
- Poly(A) binding proteins (PABPs) are crucial for mRNA regulation.
- Toxoplasma gondii, an obligate intracellular parasite, possesses unique mechanisms for gene expression control.
Purpose of the Study:
- To identify and characterize PABPs in Toxoplasma gondii.
- To investigate the formation, localization, and regulation of messenger ribonucleoprotein (mRNP) granules in T. gondii.
Main Methods:
- Protein identification and characterization.
- Subcellular localization studies using microscopy.
- Induction of parasite egress and mRNP granule formation.
- Investigating the impact of translational inhibitors and stress conditions on mRNP granule formation.
Main Results:
- Two PABPs, TgPABPC (cytoplasmic) and TgPABPN (nuclear), were identified.
- TgPABPC colocalizes with mRNP granules, serving as a marker.
- mRNP granule formation occurs independently of microtubules and precedes parasite egress.
- Granule maturation involves rapid formation pre-egress and reduction post-egress.
- Salubrinal induces granule formation in tachyzoites, but not bradyzoites; nutrient deprivation and pH stress do not.
Conclusions:
- mRNP granule formation in T. gondii is not a universal response to translational repression.
- Granule formation is likely a response to increased non-translating RNA during rapid shifts in translational state.
- TgPABPC is a reliable marker for mRNP granules in T. gondii.
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