Human Killer Cell Immunoglobulin Like Receptor 3DL1 (KIR3DL1) ELISA Kit (96T)

Human Killer Cell Immunoglobulin Like Receptor 3DL1 (KIR3DL1) ELISA Kit (96T)

Catalog #: TD2090
Availability: In Stock
¥619.00
Detection range: 0.156-10ng/mL    
Sensitivity: 0.051ng/mL    
Type: Traditional KIR3DL1 ELISA kit    
Synonyms: CD158E; HLA-BW4-specific inhibitory NK cell receptor; CD158 antigen-like family member E; Natural killer-associated transcript 3; p70 NK receptor CL-2/CL-11
Species: Human
Sample type: tissue homogenates, cell lysates or other biological fluids.
Experimental method: Sandwich
Shelf life: 12 months
Gene ID: 3811
UniProt ID: P43629
Components: 1. Pre-coated, ready to use 96-well strip plate 1
2. Plate sealer for 96 wells 2
3. Standard 2
4. Diluents buffer: 1×45 mL
5. Detection Reagent A: 1×120 μL
6. Detection Reagent B: 1×120 μL
7. TMB Substrate: 1×9 mL
8. Stop Solution: 1×6 mL
9. Wash Buffer (30× concentrate): 1×20 mL




Background

Killer cell immunoglobulin-like receptors (KIRs) are transmembrane glycoproteins expressed by natural killer cells and subsets of T cells. The KIR genes are polymorphic and highly homologous and they are found in a cluster on chromosome 19q13.4 within the 1 Mb leukocyte receptor complex (LRC). The gene content of the KIR gene cluster varies among haplotypes, although several "framework" genes are found in all haplotypes (KIR3DL3, KIR3DP1, KIR3DL4, KIR3DL2). The KIR proteins are classified by the number of extracellular immunoglobulin domains (2D or 3D) and by whether they have a long (L) or short (S) cytoplasmic domain. KIR proteins with the long cytoplasmic domain transduce inhibitory signals upon ligand binding via an immune tyrosine-based inhibitory motif (ITIM), while KIR proteins with the short cytoplasmic domain lack the ITIM motif and instead associate with the TYRO protein tyrosine kinase binding protein to transduce activating signals. The ligands for several KIR proteins are subsets of HLA class I molecules; thus, KIR proteins are thought to play an important role in regulation of the immune response.

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KIR3DL1