Immune evasion of the human pathogen Pseudomonas aeruginosa: elongation factor Tuf is a factor H and plasminogen

Anja Kunert1, Josephine Losse, Christin Gruszin

  • 1Department of Infection Biology, Leibniz Institute for Natural Product Research and Infection Biology (Hans-Knoell-Institute), Beutenbergstrasse 11a, 07745 Jena, Germany.

Insights

Pseudomonas aeruginosa evades complement attack by binding human Factor H and FHR-1 via its surface protein Tuf. This interaction inhibits complement and aids bacterial virulence and tissue invasion.

Area of Science:

  • Microbiology
  • Immunology
  • Biochemistry

Background:

  • Pseudomonas aeruginosa is an opportunistic pathogen causing infections in immunocompromised individuals.
  • Effective evasion of the human complement system is crucial for bacterial survival and virulence.

Purpose of the Study:

  • To investigate the mechanisms by which Pseudomonas aeruginosa evades the human complement system.
  • To identify bacterial surface proteins involved in complement evasion and virulence.

Main Methods:

  • Factor H affinity chromatography and mass spectrometry to identify bacterial binding proteins.
  • Bacterial surface protein characterization using immunolocalization.
  • Complement regulatory assays measuring C3b degradation.
  • Analysis of plasminogen binding and activation.

Main Results:

  • Pseudomonas aeruginosa binds human Factor H and FHR-1 to its surface, inhibiting complement attack.
  • The bacterial elongation factor Tuf was identified as a key Factor H binding protein.
  • Tuf-bound Factor H exhibited cofactor activity for C3b degradation, conferring complement resistance.
  • Tuf also bound plasminogen, which was activated to plasmin, suggesting a role in tissue invasion.

Conclusions:

  • Pseudomonas aeruginosa utilizes surface protein Tuf to bind complement regulators Factor H and FHR-1, effectively evading complement-mediated destruction.
  • Tuf acts as a multifunctional virulence factor by mediating complement control and facilitating tissue invasion through plasminogen binding and activation.

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