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Genetic Manipulation in Δku80 Strains for Functional Genomic Analysis of Toxoplasma gondii
Published on: July 12, 2013
Toxoplasma gondii PPM3H regulates the parasite virulence and modulates host immune and inflammatory responses in mice
Jun-Jun He1,2, Jun Ma3, Meng-Ling Deng3
1The Yunnan Key Laboratory of Veterinary Etiological Biology, College of Veterinary Medicine, Yunnan Agricultural University, Kunming, 650201, Yunnan, China. hejunjun617@163.com.
Abstract:
Toxoplasma gondii is an obligate intracellular parasite that causes severe illness in infants infected during pregnancy and in immunocompromised individuals. This parasite manipulates host cells through effector proteins that promote its survival and replication. While the phosphatases in the PP2C family have been shown to regulate host immune responses and contribute to the virulence and pathogenicity of various pathogens, the specific biological functions of PPM3H in T. gondii and its role in host-pathogen interactions remain unclear. In this study, we demonstrate that knockout of ppm3h significantly reduces the virulence and pathogenicity of T. gondii. In contrast, that high expression of ppm3h in the less virulent PRU induced by replacing the ppm3h gene elements of RH strain can enhance its pathogenicity, indicating a direct contribution of PPM3H to virulence in expression-independent manner. Furthermore, PPM3H significantly influenced host gene expression, with differentially expressed genes predominantly enriched in immune and inflammatory pathways. Weighted gene co-expression network analysis identified host immune genes, including chemokines such as Cx3cl1 and Ccl22, as co-expressed with ppm3h. Also, ppm3h co-expressed with T. gondii rhoptry genes including rop18, a well-known virulence factor, suggesting a role for PPM3H in coordinating host-pathogen interactions. Our findings establish that PPM3H enhances T. gondii virulence by modulating the host immune and inflammatory responses. PPM3H does not impact parasite gene expression, invasion or replication in vitro, supporting its role as an immune modulator rather than a general fitness factor. This suggests that T. gondii's pathogenicity arises not only from immune evasion but also from the active induction of host immune and inflammatory responses mediated by PPM3H.
Insights
The parasitic infection Toxoplasma gondii
Area of Science:
- Parasitology
- Molecular Biology
- Immunology
Background:
- Toxoplasma gondii (T. gondii) is an obligate intracellular parasite causing severe illness.
- Effector proteins are key to T. gondii survival and host cell manipulation.
- PP2C phosphatases regulate host immunity and pathogen virulence, but PPM3H's role is unknown.
Purpose of the Study:
- To elucidate the biological functions of PPM3H in T. gondii.
- To determine PPM3H's role in host-pathogen interactions and T. gondii virulence.
- To investigate how PPM3H influences host gene expression and immune responses.
Main Methods:
- Gene knockout and expression studies in T. gondii strains (RH and PRU).
- Analysis of host gene expression changes using RNA sequencing.
- Weighted gene co-expression network analysis (WGCNA) to identify gene interactions.
Main Results:
- ppm3h knockout significantly reduced T. gondii virulence and pathogenicity.
- High ppm3h expression enhanced pathogenicity, indicating a direct role in virulence.
- PPM3H modulated host gene expression, particularly in immune and inflammatory pathways.
- PPM3H co-expressed with host immune genes (Cx3cl1, Ccl22) and T. gondii virulence factor ROP18.
- PPM3H did not affect parasite gene expression, invasion, or replication in vitro.
Conclusions:
- PPM3H enhances T. gondii virulence by actively modulating host immune and inflammatory responses.
- PPM3H functions as an immune modulator, not a general fitness factor for the parasite.
- T. gondii pathogenicity involves active induction of host responses via effectors like PPM3H, beyond simple immune evasion.
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