Toll-like receptor 4 imparts ligand-specific recognition of bacterial lipopolysaccharide
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Open Access
- 15 February 2000
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 105 (4) , 497-504
- https://doi.org/10.1172/jci8541
Abstract
Lipopolysaccharide (LPS) is the main inducer of shock and death in Gram-negative sepsis. Recent evidence suggests that LPS-induced signal transduction begins with CD14-mediated activation of 1 or more Toll-like receptors (TLRs). The lipid A analogues lipid IVa and Rhodobacter sphaeroides lipid A (RSLA) exhibit an uncommon species-specific pharmacology. Both compounds inhibit the effects of LPS in human cells but display LPS-mimetic activity in hamster cells. We transfected human TLR4 or human TLR2 into hamster fibroblasts to determine if either of these LPS signal transducers is responsible for the species-specific pharmacology. RSLA and lipid IVa strongly induced NF-κB activity and IL-6 release in Chinese hamster ovary fibroblasts expressing CD14 (CHO/CD14), but these compounds antagonized LPS antagonists in CHO/CD14 fibroblasts that overexpressed human TLR4. No such antagonism occurred in cells overexpressing human TLR2. We cloned TLR4 from hamster macrophages and found that human THP-1 cells expressing the hamster TLR4 responded to lipid IVa as an LPS mimetic, as if they were hamster in origin. Hence, cells heterologously overexpressing TLR4 from different species acquired a pharmacological phenotype with respect to recognition of lipid A substructures that corresponded to the species from which the TLR4 transgene originated. These data suggest that TLR4 is the central lipid A–recognition protein in the LPS receptor complex.Keywords
This publication has 44 references indexed in Scilit:
- Host Defense Mechanisms Triggered by Microbial Lipoproteins Through Toll-Like ReceptorsScience, 1999
- A Divergent Synthesis of Lipid A and Its Chemically Stable Unnatural AnaloguesBulletin of the Chemical Society of Japan, 1999
- Endotoxin-tolerant Mice Have Mutations in Toll-like Receptor 4 (Tlr4)The Journal of Experimental Medicine, 1999
- Epidemiology of sepsis syndrome in 8 academic medical centers. Academic Medical Center Consortium Sepsis Project Working GroupPublished by American Medical Association (AMA) ,1997
- The Dorsoventral Regulatory Gene Cassette spätzle/Toll/cactus Controls the Potent Antifungal Response in Drosophila AdultsCell, 1996
- Enzymatically Deacylated Lipopolysaccharide (LPS) Can Antagonize LPS at Multiple Sites in the LPS Recognition PathwayJournal of Biological Chemistry, 1995
- Recognition of endotoxin by cells leading to transmembrane signalingCurrent Opinion in Immunology, 1994
- The spätzle gene encodes a component of the extracellular signaling pathway establishing the dorsal-ventral pattern of the Drosophila embryoCell, 1994
- Lipopolysaccharide antagonistsImmunology Today, 1992
- Production of hybridoma growth factor by human monocytesEuropean Journal of Immunology, 1987