The repertoire for pattern recognition of pathogens by the innate immune system is defined by cooperation between Toll-like receptors
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- 28 November 2000
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (25) , 13766-13771
- https://doi.org/10.1073/pnas.250476497
Abstract
Toll-like receptors (TLRs) have been shown to participate in the recognition of pathogens by the innate immune system, but it is not clear how a restricted family of receptors has the capacity to recognize the wide spectrum of TLR stimuli known to exist. We report here that two members of the TLR family, TLR2 and TLR6, together coordinate macrophage activation by Gram-positive bacteria and the yeast cell-wall particle, zymosan. TLR6 and TLR2 both are recruited to the macrophage phagosome, where they recognize peptidoglycan, a Gram-positive pathogen component. By contrast, TLR2 recognizes another component, bacterial lipopeptide, without TLR6. The requirement for TLR cooperation is supported by the finding that TLR2 needs a partner to activate tumor necrosis factor-α production in macrophages. Dimerization of the cytoplasmic domain of TLR2 does not induce tumor necrosis factor-α production in macrophages, whereas similar dimerization of the TLR4 cytoplasmic domain does. We show that the cytoplasmic domain of TLR2 can form functional pairs with TLR6 or TLR1, and this interaction leads to cytokine induction. Thus, the cytoplasmic tails of TLRs are not functionally equivalent, with certain TLRs requiring assembly into heteromeric complexes, whereas others are active as homomeric complexes. Finally, we show that TLR6, TLR2, and TLR1 are recruited to macrophage phagosomes that contain IgG-coated erythrocytes that do not display microbial components. The data suggest that TLRs sample the contents of the phagosome independent of the nature of the contents, and can establish a combinatorial repertoire to discriminate among the large number of pathogen-associated molecular patterns found in nature.Keywords
This publication has 34 references indexed in Scilit:
- The immune system evolved to discriminate infectious nonself from noninfectious selfPublished by Elsevier ,2003
- Toll-like receptor 4 imparts ligand-specific recognition of bacterial lipopolysaccharideJournal of Clinical Investigation, 2000
- Innate immunity: Lipoproteins take their Toll on the hostCurrent Biology, 1999
- Analysis of Tlr4-Mediated LPS Signal Transduction in Macrophages by Mutational Modification of the ReceptorBlood Cells, Molecules, and Diseases, 1999
- Host Defense Mechanisms Triggered by Microbial Lipoproteins Through Toll-Like ReceptorsScience, 1999
- Bacterial Lipopolysaccharide Activates Nuclear Factor-κB through Interleukin-1 Signaling Mediators in Cultured Human Dermal Endothelial Cells and Mononuclear PhagocytesJournal of Biological Chemistry, 1999
- Endotoxin-tolerant Mice Have Mutations in Toll-like Receptor 4 (Tlr4)The Journal of Experimental Medicine, 1999
- Dimeric association and segmental variability in the structure of human CD4Nature, 1997
- Three NF-kappa B binding sites in the human E-selectin gene required for maximal tumor necrosis factor alpha-induced expression.Molecular and Cellular Biology, 1994
- Approaching the Asymptote? Evolution and Revolution in ImmunologyCold Spring Harbor Symposia on Quantitative Biology, 1989