Molecular Basis of Reduced Potency of Underacylated Endotoxins
Open Access
- 1 October 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 175 (7) , 4669-4676
- https://doi.org/10.4049/jimmunol.175.7.4669
Abstract
Potent TLR4-dependent cell activation by Gram-negative bacterial endotoxins depends on sequential endotoxin-protein and protein-protein interactions with LPS-binding protein, CD14, myeloid differentiation protein 2 (MD-2), and TLR4. Previous studies have suggested that reduced agonist potency of underacylated endotoxins (i.e., tetra- or penta- vs hexa-acylated) is determined by post-CD14 interactions. To better define the molecular basis of the differences in agonist potency of endotoxins differing in fatty acid acylation, we compared endotoxins (lipooligosaccharides (LOS)) from hexa-acylated wild-type (wt), penta-acylated mutant msbB meningococcal strains as well as tetra-acylated LOS generated by treatment of wt LOS with the deacylating enzyme, acyloxyacylhydrolase. To facilitate assay of endotoxin:protein and endotoxin:cell interactions, the endotoxins were purified after metabolic labeling with [3H]- or [14C]acetate. All LOS species tested formed monomeric complexes with MD-2 in an LPS-binding protein- and CD14-dependent manner with similar efficiency. However, msbB LOS:MD-2 and acyloxyacylhydrolase-treated LOS:MD-2 were at least 10-fold less potent in inducing TLR4-dependent cell activation than wt LOS:MD-2 and partially antagonized the action of wt LOS:MD-2. These findings suggest that underacylated endotoxins produce decreased TLR4-dependent cell activation by altering the interaction of the endotoxin:MD-2 complex with TLR4 in a way that reduces receptor activation. Differences in potency among these endotoxin species is determined not by different aggregate properties, but by different properties of monomeric endotoxin:MD-2 complexes.Keywords
This publication has 39 references indexed in Scilit:
- LPS, TLR4 and infectious disease diversityNature Reviews Microbiology, 2005
- Ligand-dependent Toll-like receptor 4 (TLR4)-oligomerization is directly linked with TLR4-signalingInnate Immunity, 2004
- Ligand-dependent Toll-like receptor 4 (TLR4)-oligomerization is directly linked with TLR4-signalingInnate Immunity, 2004
- Regulation of interactions of endotoxin with host cellsInnate Immunity, 2003
- Lysines 128 and 132 Enable Lipopolysaccharide Binding to MD-2, Leading to Toll-like Receptor-4 Aggregation and Signal TransductionJournal of Biological Chemistry, 2003
- An Essential Role for Albumin in the Interaction of Endotoxin with Lipopolysaccharide-binding Protein and sCD14 and Resultant Cell ActivationJournal of Biological Chemistry, 2002
- MD-2, a Novel Accessory Molecule, Is Involved in Species-Specific Actions ofSalmonellaLipid AInfection and Immunity, 2002
- Essential role of MD-2 in LPS responsiveness and TLR4 distributionNature Immunology, 2002
- Human Toll-like receptor 4 recognizes host-specific LPS modificationsNature Immunology, 2002
- Cellular Events Mediated by Lipopolysaccharide-stimulated Toll-like Receptor 4Journal of Biological Chemistry, 2000