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Isolation and In Vitro Culture of Murine and Human Alveolar Macrophages
Published on: April 20, 2018
FBXO6 regulates the antiviral immune responses via mediating alveolar macrophages survival
Mengyuan Cen1,2, Wei Ouyang1, Xiuhui Lin1
1Department of Infectious Diseases, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Abstract:
Inducing early apoptosis in alveolar macrophages is one of the strategies influenza A virus (IAV) evolved to subvert host immunity. Correspondingly, the host mitochondrial protein nucleotide-binding oligomerization domain-like receptor (NLR)X1 is reported to interact with virus polymerase basic protein 1-frame 2 (PB1-F2) accessory protein to counteract virus-induced apoptosis. Herein, we report that one of the F-box proteins, FBXO6, promotes proteasomal degradation of NLRX1, and thus facilitates IAV-induced alveolar macrophages apoptosis and modulates both macrophage survival and type I interferon (IFN) signaling. We observed that FBXO6-deficient mice infected with IAV exhibited decreased pulmonary viral replication, alleviated inflammatory-associated pulmonary dysfunction, and less mortality. Analysis of the lungs of IAV-infected mice revealed markedly reduced leukocyte recruitment but enhanced production of type I IFN in Fbxo6-/- mice. Furthermore, increased type I IFN production and decreased viral replication were recapitulated in FBXO6 knockdown macrophages and associated with reduced apoptosis. Through gain- and loss-of-function studies, we found lung resident macrophages but not bone marrow-derived macrophages play a key role in the differences FBXO6 signaling pathway brings in the antiviral immune response. In further investigation, we identified that FBXO6 interacted with and promoted the proteasomal degradation of NLRX1. Together, our results demonstrate that FBXO6 negatively regulates immunity against IAV infection by enhancing the degradation of NLRX1 and thus impairs the survival of alveolar macrophages and antiviral immunity of the host.
Insights
FBXO6 protein accelerates influenza A virus replication by degrading NLRX1, a key immune regulator. Inhibiting FBXO6 enhances macrophage survival and type I interferon signaling, crucial for antiviral defense.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Influenza A virus (IAV) uses apoptosis to evade host immunity.
- NLRX1, a mitochondrial protein, counteracts IAV-induced apoptosis by interacting with PB1-F2.
- F-box proteins are involved in protein degradation and immune regulation.
Purpose of the Study:
- To investigate the role of FBXO6 in IAV infection and macrophage apoptosis.
- To elucidate the mechanism by which FBXO6 influences antiviral immunity.
Main Methods:
- Studies in FBXO6-deficient mice and FBXO6 knockdown macrophages.
- Analysis of viral replication, apoptosis, type I interferon production, and leukocyte recruitment.
- Gain- and loss-of-function studies in different macrophage populations.
- Investigation of protein-protein interactions and proteasomal degradation pathways.
Main Results:
- FBXO6 deficiency in mice led to reduced viral replication, less lung inflammation, and lower mortality.
- FBXO6 knockdown in macrophages increased type I interferon production and decreased apoptosis.
- Lung resident macrophages, not bone marrow-derived macrophages, were key in FBXO6's antiviral effects.
- FBXO6 directly promotes the proteasomal degradation of NLRX1.
Conclusions:
- FBXO6 negatively regulates immunity against IAV by degrading NLRX1.
- FBXO6 facilitates IAV-induced apoptosis in alveolar macrophages.
- Targeting FBXO6 may represent a novel strategy to enhance antiviral immunity.
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