Lipopolysaccharide (LPS) binding protein, truncated at Ile-197, binds LPS but does not transfer LPS to CD14

J Han1, J C Mathison, R J Ulevitch

  • 1Department of Immunology, Scripps Research Institute, La Jolla, California 92037.

Insights

A truncated Lipopolysaccharide (LPS) binding protein (LBP) fragment binds LPS but not CD14, inhibiting LPS-induced cell activation. This suggests distinct binding sites for LPS and CD14 on LBP.

Area of Science:

  • Immunology
  • Biochemistry
  • Molecular Biology

Background:

  • Lipopolysaccharide (LPS) binding protein (LBP) facilitates LPS recognition by CD14, activating myeloid, endothelial, and epithelial cells.
  • Understanding LBP structure-function relationships is crucial for modulating LPS-induced immune responses.

Purpose of the Study:

  • To characterize a truncated human LBP (NH-LBP, residues 1-197) for its LPS binding and CD14 interaction capabilities.
  • To investigate the functional consequences of NH-LBP on LPS binding and cellular activation.

Main Methods:

  • Expression and characterization of a truncated human LBP (NH-LBP).
  • Assays to measure LPS binding affinity to NH-LBP.
  • Experiments to assess NH-LBP's ability to promote LPS transfer to CD14 (membrane-bound and soluble).
  • Inhibition assays for LPS binding, CD14 interaction, and macrophage activation.

Main Results:

  • NH-LBP efficiently binds LPS with a dissociation constant < 1 x 10(-8) M.
  • NH-LBP does not transfer LPS to either mCD14 or sCD14.
  • NH-LBP inhibits LPS binding to LBP, LPS-CD14 complex formation, and LPS-induced macrophage activation.

Conclusions:

  • The LPS binding site of LBP is located in the amino-terminal half (residues 1-197).
  • The CD14 interaction site is located in the carboxyl-terminal half of LBP.
  • Modified LBP fragments could serve as novel reagents to inhibit LPS-dependent cellular activation in vivo.

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