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Published on: September 6, 2024
Phosphatase Cdc25A Negatively Regulates the Antiviral Immune Response by Inhibiting TBK1 Activity
Dandan Qi1, Lei Hu1, Tong Jiao1,2
1CAS Key Laboratory of Pathogenic Microbiology and Immunology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.
Abstract:
The phosphatase Cdc25A plays an important role in cell cycle regulation by dephosphorylating its substrates, such as cyclin-dependent kinases. In this study, we demonstrate that Cdc25A negatively regulates RIG-I-mediated antiviral signaling. We found that ectopic expression of Cdc25A in 293T cells inhibits the activation of beta interferon (IFN-β) induced by Sendai virus and poly(I·C), while knockdown of Cdc25A enhances the transcription of IFN-β stimulated by RNA virus infection. The inhibitory effect of Cdc25A on the antiviral immune response is mainly dependent on its phosphatase activity. Data from a luciferase assay indicated that Cdc25A can inhibit TBK1-mediated activation of IFN-β. Further analysis indicated that Cdc25A can interact with TBK1 and reduce the phosphorylation of TBK1 at S172, which in turn decreases the phosphorylation of its downstream substrate IRF3. Consistently, knockdown of Cdc25A upregulates the phosphorylation of both TBK1-S172 and IRF3 in Sendai virus-infected or TBK1-transfected 293T cells. In addition, we confirmed that Cdc25A can directly dephosphorylate TBK1-S172-p. These results demonstrate that Cdc25A inhibits the antiviral immune response by reducing the active form of TBK1. Using herpes simplex virus 1 (HSV-1) infection, an IFN-β reporter assay, and reverse transcription-quantitative PCR (RT-qPCR), we demonstrated that Cdc25A can also inhibit DNA virus-induced activation of IFN-β. Using a vesicular stomatitis virus (VSV) infection assay, we confirmed that Cdc25A can repress the RIG-I-like receptor (RLR)-mediated antiviral immune response and influence the antiviral status of cells. In conclusion, we demonstrate that Cdc25A negatively regulates the antiviral immune response by inhibiting TBK1 activity.IMPORTANCE The RLR-mediated antiviral immune response is critical for host defense against RNA virus infection. However, the detailed mechanism for balancing the RLR signaling pathway in host cells is not well understood. We found that the phosphatase Cdc25A negatively regulates the RNA virus-induced innate immune response. Our studies indicate that Cdc25A inhibits the RLR signaling pathway via its phosphatase activity. We demonstrated that Cdc25A reduces TBK1 activity and consequently restrains the activation of IFN-β transcription as well as the antiviral status of nearby cells. We showed that Cdc25A can also inhibit DNA virus-induced activation of IFN-β. Taken together, our findings uncover a novel function and mechanism for Cdc25A in regulating antiviral immune signaling. These findings reveal Cdc25A as an important negative regulator of antiviral immunity and demonstrate its role in maintaining host cell homeostasis following viral infection.
Insights
The phosphatase Cdc25A negatively regulates the antiviral immune response by inhibiting TBK1 activity, impacting beta interferon (IFN-β) production. This study reveals Cdc25A as a key player in controlling host defense against viral infections.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- The RIG-I-like receptor (RLR) pathway is crucial for host defense against RNA viruses.
- Mechanisms balancing RLR signaling in host cells require further elucidation.
- The phosphatase Cdc25A is known for its role in cell cycle regulation.
Purpose of the Study:
- To investigate the role of Cdc25A in regulating RIG-I-mediated antiviral signaling.
- To elucidate the molecular mechanism by which Cdc25A affects antiviral immunity.
Main Methods:
- Ectopic expression and knockdown of Cdc25A in 293T cells.
- Stimulation with Sendai virus, poly(I·C), herpes simplex virus 1 (HSV-1), and vesicular stomatitis virus (VSV).
- Luciferase assays, Western blotting to assess protein phosphorylation (TBK1, IRF3), and RT-qPCR for IFN-β transcription.
Main Results:
- Cdc25A expression inhibits virus-induced beta interferon (IFN-β) production, while its knockdown enhances it.
- Cdc25A dephosphorylates and inhibits TBK1 kinase activity, thereby reducing IRF3 phosphorylation.
- Cdc25A negatively regulates both RNA and DNA virus-induced IFN-β activation and the overall antiviral state.
Conclusions:
- Cdc25A acts as a negative regulator of the antiviral immune response by inhibiting TBK1 activity.
- Cdc25A's phosphatase activity is essential for its inhibitory role in the RLR signaling pathway.
- These findings identify a novel mechanism for controlling antiviral immunity and host cell homeostasis during viral infections.
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