Characterization of Mannheimia (Pasteurella) haemolytica leukotoxin interaction with bovine alveolar macrophage beta2

Praveen Thumbikat1, Thamotharampillai Dileepan, Mathur S Kannan

  • 1Department of Veterinary and Biomedical Sciences, University of Minnesota, St. Paul, Minnesota 55108, USA.

Veterinary Research
|August 27, 2005
PubMed

Insights

Mannheimia (Pasteurella) haemolytica leukotoxin (LktA) binds bovine leukocytes via the LFA-1 integrin. This study identifies CD11a and CD18 subunits of LFA-1 as critical for LktA binding and signaling in macrophages.

Area of Science:

  • Veterinary Immunology
  • Bacterial Pathogenesis
  • Molecular Cell Biology

Background:

  • Mannheimia (Pasteurella) haemolytica causes bovine pneumonic mannheimiosis, releasing leukotoxin (LktA).
  • LktA, an RTX toxin, specifically targets ruminant leukocytes via a receptor.
  • Beta2 integrin LFA-1 was previously identified as a receptor for LktA, but specific subunits and signaling pathways remain unclear.

Purpose of the Study:

  • To pinpoint the specific subunits of bovine LFA-1 involved in LktA binding.
  • To characterize the interaction between LktA and these subunits on bovine alveolar macrophages.
  • To elucidate post-binding signaling events mediated by LktA-LFA-1 interaction.

Main Methods:

  • Investigated LktA binding to CD18 and CD11a subunits of LFA-1 and Mac-1 on bovine alveolar macrophages.
  • Assessed post-binding signaling, including intracellular calcium elevation and CD18 tail phosphorylation.
  • Utilized a small molecule inhibitor of the CD11a I-domain to block LktA binding and signaling.

Main Results:

  • LktA binds to the CD18 subunit of both LFA-1 and Mac-1.
  • Post-binding signaling (calcium elevation, CD18 phosphorylation) occurs exclusively through LFA-1.
  • LktA also binds to the CD11a subunit, and I-domain inhibition significantly reduces LktA-induced signaling.

Conclusions:

  • LFA-1 is the functional leukotoxin receptor on bovine alveolar macrophages.
  • Both CD11a and CD18 subunits of LFA-1 are crucial for LktA binding and subsequent cellular activation.
  • Targeting the LFA-1 I-domain may offer a strategy to mitigate LktA-induced damage.

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