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Chicken IFI6 inhibits avian reovirus replication and affects related innate immune signaling pathways
Lijun Wan1,2, Sheng Wang1,2, Zhixun Xie1,2
1Guangxi Key Laboratory of Veterinary Biotechnology, Guangxi Veterinary Research Institute, Nanning, Guangxi, China.
Abstract:
Interferon-alpha inducible protein 6 (IFI6) is an important interferon-stimulated gene. To date, research on IFI6 has mainly focused on human malignant tumors, virus-related diseases and autoimmune diseases. Previous studies have shown that IFI6 plays an important role in antiviral, antiapoptotic and tumor-promoting cellular functions, but few studies have focused on the structure or function of avian IFI6. Avian reovirus (ARV) is an important virus that can exert immunosuppressive effects on poultry. Preliminary studies have shown that IFI6 expression is upregulated in various tissues and organs of specific-pathogen-free chickens infected with ARV, suggesting that IFI6 plays an important role in ARV infection. To analyze the function of avian IFI6, particularly in ARV infection, the chicken IFI6 gene was cloned, a bioinformatics analysis was conducted, and the roles of IFI6 in ARV replication and the innate immune response were investigated after the overexpression or knockdown of IFI6 in vitro. The results indicated that the molecular weight of the chicken IFI6 protein was approximately 11 kDa and that its structure was similar to that of the human IFI27L1 protein. A phylogenetic tree analysis of the IFI6 amino acid sequence revealed that the evolution of mammals and birds was clearly divided into two branches. The evolutionary history and homology of chickens are similar to those of other birds. Avian IFI6 localized to the cytoplasm and was abundantly expressed in the chicken lung, intestine, pancreas, liver, spleen, glandular stomach, thymus, bursa of Fabricius and trachea. Further studies demonstrated that IFI6 overexpression in DF-1 cells inhibited ARV replication and that the inhibition of IFI6 expression promoted ARV replication. After ARV infection, IFI6 modulated the expression of various innate immunity-related factors. Notably, the expression patterns of MAVS and IFI6 were similar, and the expression patterns of IRF1 and IFN-β were opposite to those of IFI6. The results of this study further advance the research on avian IFI6 and provide a theoretical basis for further research on the role of IFI6 in avian virus infection and innate immunity.
Insights
Interferon-alpha inducible protein 6 (IFI6) in chickens inhibits avian reovirus (ARV) replication and modulates innate immunity. This study characterizes avian IFI6, revealing its role in antiviral defense and providing a basis for understanding avian viral infections.
Area of Science:
- Molecular Biology
- Immunology
- Virology
- Bioinformatics
Background:
- Interferon-alpha inducible protein 6 (IFI6) is an interferon-stimulated gene with known roles in human diseases.
- Research on avian IFI6, particularly its function in avian reovirus (ARV) infection, is limited.
- ARV infection in poultry can cause immunosuppression, highlighting the need to understand host-pathogen interactions.
Purpose of the Study:
- To clone and characterize the chicken IFI6 gene and protein.
- To investigate the role of avian IFI6 in ARV replication.
- To explore the involvement of IFI6 in the chicken innate immune response to ARV.
Main Methods:
- Cloning of the chicken IFI6 gene.
- Bioinformatics analysis including phylogenetic tree construction.
- In vitro studies involving overexpression and knockdown of IFI6 in DF-1 cells infected with ARV.
Main Results:
- Chicken IFI6 protein has a molecular weight of ~11 kDa and shares structural similarity with human IFI27L1.
- IFI6 overexpression inhibited ARV replication, while IFI6 knockdown promoted it in DF-1 cells.
- IFI6 modulated innate immunity factors, with expression patterns similar to MAVS and opposite to IRF1 and IFN-β.
Conclusions:
- Avian IFI6 plays a significant role in restricting ARV replication.
- IFI6 is involved in modulating the innate immune response during ARV infection.
- This study provides a foundation for further research into avian IFI6's function in viral infections and immunity.
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