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.

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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