Structural aspects of molecular recognition in the immune system. Part II: Pattern recognition receptors (IUPAC Technical Report)
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Summary
Recent progress in structural studies of PRRs are described, which is required for an understanding of how they specifically recognize structurally diverse “foreign” PAMPs amongst a background of other “self” molecules that are present in the human body.
- Type
- article
- Published
- 2014-10-21
- Cited by
- 10
- References
- 130
- Access
- Open access
- OpenAlex
- https://openalex.org/W1985609365
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93303440
Keywords
Pattern recognition receptor, Immune system, Pathogen-associated molecular pattern, Innate immune system, Acquired immune system
References
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- Pattern recognition receptors: sentinels in innate immunity and targets of new vaccine adjuvants
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- NLRX1 negatively regulates TLR-induced NF-κB signaling by targeting TRAF6 and IKK
- Structural and Functional Analysis of the NLRP4 Pyrin Domain
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Cited by
- Comparative Geometrical Analysis of Leucine-Rich Repeat Structures in the Nod-Like and Toll-Like Receptors in Vertebrate Innate Immunity
- Immunochemical Recognition and its Diagnostic and Therapeutic Applications
- Direct effects of milk oligosaccharides on the inflammatory response in relation to allergy
- Viral Nanotechnology: Synthetic Virus-like Particles in Vaccine Design
- Effect of EPEC endotoxin and bifidobacteria on intestinal barrier function through modulation of toll-like receptor 2 and toll-like receptor 4 expression in intestinal epithelial cell-18
- Transport Stress Induces Skin Innate Immunity Response in Hybrid Yellow Catfish (Tachysurus fulvidraco♀ × P. vachellii♂) Through TLR/NLR Signaling Pathways and Regulation of Mucus Secretion
- Transcriptome analysis of Chinese sucker (Myxocyprinus asiaticus) head kidney and discovery of key immune-related genes to cold stress after swimming fatigue.
- Medicinal Plants for a Healthy Gut Microbiome: Scientific Insights into Modern Herbal Applications
- Defects in intron recycling suppress the antiviral response via a mechanism of intronic endogenous dsRNA
- The Mammalian Response: A Mosaic of Structures
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