The Toll-like receptor 3:dsRNA signaling complex
Autor: | Lin Liu, David M. Segal, Yan Wang, David R. Davies, Istvan Botos |
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Rok vydání: | 2009 |
Předmět: |
Models
Molecular Glycosylation genetic structures viruses DNA Mutational Analysis Molecular Conformation Biophysics chemical and pharmacologic phenomena Leucine-rich repeat Biology Ligands Polymorphism Single Nucleotide Biochemistry Article Protein structure Structural Biology Genetics Animals Humans Molecular Biology RNA Double-Stranded Toll-like receptor Dose-Response Relationship Drug Cell Membrane Pattern recognition receptor virus diseases hemic and immune systems MDA5 Protein Structure Tertiary Toll-Like Receptor 3 Kinetics Ectodomain TLR3 Signal transduction Dimerization Signal Transduction |
Zdroj: | Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms. 1789:667-674 |
ISSN: | 1874-9399 |
DOI: | 10.1016/j.bbagrm.2009.06.005 |
Popis: | Toll-like receptors (TLRs) recognize conserved molecular patterns in invading pathogens and trigger innate immune responses. TLR3 recognizes dsRNA, a molecular signature of most viruses via its ectodomain (ECD). The TLR3-ECD structure consists of a 23 turn coil bent into the shape of a horseshoe with specialized domains capping the N and C terminal ends of the coil. TLR3-ECDs bind as dimeric units to dsRNA oligonucleotides of at least 45 bp in length, the minimal length required for signal transduction. X-ray analysis has shown that each TLR3-ECD of a dimer binds dsRNA at two sites located at opposite ends of the TLR3 “horseshoe” on the one lateral face that lacks N-linked glycans. Intermolecular contacts between the C-terminal domains of two TLR3-ECDs stabilizes the dimer and positions the C-terminal residues within 20–25Å of each other, which is thought to be essential for transducing a signal across the plasma membrane in intact TLR3 molecules. Interestingly, in TLRs 1, 2 and 4, which bind lipid ligands using very different interactions from TLR3, the ligands nevertheless promote the formation of a dimer in which the same two lateral surfaces as in the TLR3-ECD:dsRNA complex face each other, bringing their C-termini in close proximity. Thus, a pattern is emerging in which pathogen-derived substances bind to TLR-ECDs, thereby promoting the formation of a dimer in which the glycan-free ligand-binding surfaces face each other and the two C-termini are brought in close proximity for signal transduction. |
Databáze: | OpenAIRE |
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