Human Cholinergic Receptor, Nicotinic, Beta 3 (CHRNb3) ELISA Kit (96T)

Human Cholinergic Receptor, Nicotinic, Beta 3 (CHRNb3) ELISA Kit (96T)

Catalog #: TD3261
Availability: In Stock
¥649.00
Detection range: 0.312-20ng/mL    
Sensitivity: 0.125ng/mL    
Type: Traditional CHRNβ3 ELISA kit    
Synonyms: CHR-NB3; CHRN-B3; N-AChRB3; NAChRB3; N-AChR-B3; Neuronal Acetylcholine Receptor Beta 3
Species: Human
Sample type: tissue homogenates or other biological fluids.
Experimental method: Sandwich
Shelf life: 12 months
Gene ID: 1142
UniProt ID: Q05901
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

The nicotinic acetylcholine receptors (nAChRs) are members of a superfamily of ligand-gated ion channels that mediate fast signal transmission at synapses. The nAChRs are thought to be hetero-pentamers composed of homologous subunits. The proposed structure for each subunit is a conserved N-terminal extracellular domain followed by three conserved transmembrane domains, a variable cytoplasmic loop, a fourth conserved transmembrane domain, and a short C-terminal extracellular region. The protein encoded by this gene forms a homo-oligomeric channel, displays marked permeability to calcium ions and is a major component of brain nicotinic receptors that are blocked by, and highly sensitive to, alpha-bungarotoxin. Once this receptor binds acetylcholine, it undergoes an extensive change in conformation that affects all subunits and leads to opening of an ion-conducting channel across the plasma membrane. This gene is located in a region identified as a major susceptibility locus for juvenile myoclonic epilepsy and a chromosomal location involved in the genetic transmission of schizophrenia. An evolutionarily recent partial duplication event in this region results in a hybrid containing sequence from this gene and a novel FAM7A gene. Alternative splicing results in multiple transcript variants.

You may also be interested in the target:

CHRNb3