The Toxoplasma Effector GRA4 Hijacks Host TBK1 to Oppositely Regulate Anti-T. Gondii Immunity and Tumor Immunotherapy
Zhiqiang Hu1,2, Yufen Zhang1, Yingchao Xie1
1Department of Immunology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, 510515, China.
Abstract:
Toxoplasma gondii (T. gondii)-associated polymorphic effector proteins are crucial in parasite development and regulating host anti-T. gondii immune responses. However, the mechanism remains obscure. Here, it is shown that Toxoplasma effector dense granules 4 (GRA4) restricts host IFN-I activation. Infection with Δgra4 mutant T. gondii strain induces stronger IFN-I responses and poses a severe threat to host health. Mechanistically, GRA4 binds to phosphorylated TBK1 to promote TRIM27-catalyzed K48-ubiquitination at Lys251/Lys372 residues, which enhances its recognition by autophagy receptor p62, ultimately leading to TBK1 autophagic degradation. Furthermore, an avirulent Δgra4 strain (ME49Δompdc/gra4) is constructed for tumor immunotherapy due to its ability to enhance IFN-I production. Earlier vaccination with ME49Δompdc/gra4 confers complete host resistance to the tumor compared with the classical ME49Δompdc treatment. Notably, ME49Δompdc/gra4 vaccination induces a specific CD64+MAR-1+CD11b+ dendritic cell subset, thereby enhancing T cell anti-tumor responses. Overall, these findings identify the negative role of T. gondii GRA4 in modulating host IFN-I signaling and suggest that GRA4 can be a potential target for the development of T. gondii vaccines and tumor immunotherapy.
Insights
Toxoplasma gondii effector GRA4 inhibits host IFN-I immunity. Deleting GRA4 boosts immune response, offering a new strategy for tumor immunotherapy by enhancing T cell responses.
Area of Science:
- Immunology
- Parasitology
- Oncology
Background:
- Toxoplasma gondii effector proteins regulate host immune responses, but mechanisms are unclear.
- Interferon type I (IFN-I) signaling is critical for anti-Toxoplasma immunity.
Purpose of the Study:
- To elucidate the mechanism by which Toxoplasma gondii effector dense granules 4 (GRA4) modulates host IFN-I activation.
- To evaluate the potential of a GRA4-deficient T. gondii strain for tumor immunotherapy.
Main Methods:
- Investigated the interaction of GRA4 with host proteins involved in IFN-I signaling.
- Utilized a Δgra4 mutant T. gondii strain and constructed an avirulent ME49Δompdc/gra4 strain.
- Assessed immune responses and anti-tumor efficacy in vaccination models.
Main Results:
- T. gondii GRA4 restricts host IFN-I activation by promoting TBK1 autophagic degradation.
- Infection with Δgra4 mutant T. gondii induced stronger IFN-I responses.
- Vaccination with avirulent ME49Δompdc/gra4 conferred complete tumor resistance by enhancing T cell responses via a specific dendritic cell subset.
Conclusions:
- T. gondii GRA4 negatively regulates host IFN-I signaling.
- GRA4-deficient T. gondii strains hold promise for developing novel vaccines and cancer immunotherapies.
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