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Published on: October 11, 2013
Chicken miR-148a-3p regulates immune responses against AIV by targeting the MAPK signalling pathway and IFN-γ
Thi Hao Vu1,2, Yeojin Hong1, Jubi Heo1
1Department of Animal Science and Technology, Chung-Ang University, Anseong, 17546, Republic of Korea.
Abstract:
MicroRNAs are involved in the immune systems of host animals and play essential roles in several immune-related pathways. In the current study, we investigated the systemic biological function of the chicken miRNA gga-miR-148a-3p on immune responses in chicken lines resistant and susceptible to HPAIV-H5N1. We found that gga-miR-148a expression in the lung tissue of H5N1-resistant chickens was significantly downregulated during HPAIV-H5N1 infection. Overexpression of gga-miR-148a and a reporter construct with wild type or mutant IFN-γ, MAPK11, and TGF-β2 3' untranslated region (3' UTR)-luciferase in chicken fibroblasts showed that gga-miR-148a acted as a direct translational repressor of IFN-γ, MAPK11, and TGF-β2 by targeting their 3' UTRs. Furthermore, miR-148a directly and negatively influenced the expression of signalling molecules related to the MAPK signalling pathway, including MAPK11, TGF-β2, and Jun, and regulated antiviral responses through interferon-stimulated genes and MHC class I and class II genes by targeting IFN-γ. Downstream of the MAPK signalling pathway, several proinflammatory cytokines such as IL-1β, IFN-γ, IL-6, TNF-α, IFN-β, and interferon-stimulated genes were downregulated by the overexpression of gga-miR-148a. Our data suggest that gga-miR-148a-3p is an important regulator of the MAPK signalling pathway and antiviral response. These findings improve our understanding of the biological functions of gga-miR-148a-3p, the mechanisms underlying the MAPK signalling pathway, and the antiviral response to HPAIV-H5N1 infection in chickens as well as the role of gga-miR-148a-3p in improving the overall performance of chicken immune responses for breeding disease-resistant chickens.
Insights
Chicken microRNA gga-miR-148a-3p regulates immune responses and antiviral activity against HPAIV-H5N1. This microRNA is downregulated in resistant chickens and represses key immune signaling pathways, offering potential for disease resistance breeding.
Area of Science:
- Immunology
- Genetics
- Virology
Background:
- MicroRNAs (miRNAs) are crucial regulators of animal immune systems.
- Chicken miRNAs play significant roles in immune-related pathways, including responses to avian influenza.
- Understanding specific miRNA functions, like gga-miR-148a-3p, is vital for avian disease resistance.
Purpose of the Study:
- To investigate the biological function of chicken gga-miR-148a-3p in immune responses to highly pathogenic avian influenza virus (HPAIV-H5N1).
- To elucidate the regulatory mechanisms of gga-miR-148a-3p in chicken immune cells and its impact on antiviral pathways.
Main Methods:
- Expression analysis of gga-miR-148a in H5N1-infected resistant and susceptible chickens.
- Luciferase reporter assays to confirm direct targeting of IFN-γ, MAPK11, and TGF-β2 by gga-miR-148a.
- Overexpression studies in chicken fibroblasts to assess the impact on signaling pathways and immune gene expression.
Main Results:
- gga-miR-148a expression was significantly downregulated in the lungs of H5N1-resistant chickens post-infection.
- gga-miR-148a directly represses the translation of IFN-γ, MAPK11, and TGF-β2 by targeting their 3' UTRs.
- Overexpression of gga-miR-148a downregulated pro-inflammatory cytokines and interferon-stimulated genes, impacting MAPK signaling and antiviral responses.
Conclusions:
- gga-miR-148a-3p is a key regulator of the MAPK signaling pathway and antiviral responses in chickens.
- This miRNA negatively influences immune signaling molecules and cytokine production during HPAIV-H5N1 infection.
- Findings contribute to understanding chicken immunity and offer potential targets for breeding disease-resistant chickens.

