Coxiella burnetii avoids macrophage phagocytosis by interfering with spatial distribution of complement receptor 3

Christian Capo1, Alix Moynault, Yves Collette

  • 1Unité des Rickettsies, Faculté de Médecine, Centre National de la Recherche Scientifique Unité Mixte de Recherche 6020, Marseille, France.

Insights

Coxiella burnetii evades macrophage detection by altering receptor localization. Restoring complement receptor 3 (CR3) positioning enhances bacterial uptake and inhibits replication, revealing a novel pathogen evasion strategy.

Area of Science:

  • Immunology
  • Microbiology
  • Cell Biology

Background:

  • Phagocytosis is crucial for host defense but exploited by pathogens like Coxiella burnetii.
  • Coxiella burnetii subverts macrophage phagocytosis, mediated by alpha(v)beta(3) integrin, with impaired complement receptor 3 (CR3) cross-talk.
  • CR3 localization is critical for efficient phagocytosis and pathogen control.

Purpose of the Study:

  • To investigate the role of CR3 localization in Coxiella burnetii phagocytosis by monocytes.
  • To determine if restoring CR3 localization can enhance bacterial uptake and control intracellular replication.

Main Methods:

  • Utilized THP-1 monocyte cell models.
  • Investigated the localization of alpha(v)beta(3) integrin and CR3 during C. burnetii uptake.
  • Stimulated monocytes with RANTES or HIV-1 Nef protein to assess effects on CR3 localization and phagocytosis.

Main Results:

  • CR3 was excluded from pseudopodal extensions during C. burnetii invasion, unlike alpha(v)beta(3) integrin.
  • RANTES and HIV-1 Nef restored CR3 localization to pseudopods, significantly increasing C. burnetii phagocytosis.
  • Enhanced CR3-mediated phagocytosis correlated with inhibited intracellular C. burnetii replication.

Conclusions:

  • CR3 localization is essential for effective phagocytosis of C. burnetii by monocytes.
  • Restoring CR3 localization represents a potential strategy to control C. burnetii infection.
  • Pathogens may employ altered receptor localization to subvert host immune responses.