Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Cat. No. : OE-PNDC000301
Tag : C-Flag tag and Strep Tag Expression System : Mammalian expression system
| Cat. No. | OE-PNDC000301 |
| Description | Human CHRNB3 nanodisc contains full length human CHRNB3 protein that is produced from HEK293 cells. Our nanodisc platform employs the mammalian expression system, which ensures that the Human CHRNB3 protein closely resembles its native counterpart in terms of structure, function, and post-translational modifications, while maintaining exceptional solubility and stability. This nanodisc is an optimal tool for investigating the Human CHRNB3 membrane protein. |
| Gene Abbr | CHRNB3 |
| Gene Name | CHRNB3 |
| Species | Human |
| Gene Species | Human |
| Tag | C-Flag tag and Strep Tag |
| Features |
1) Full-length membrane protein 2) Utilizing a mammalian expression system to ensure that the protein closely resembles its native counterpart in terms of structure, function, and post-translational modifications 3) Maintaining the native spatial conformation and activity of the membrane protein 4) Possessing high solubility and stability 5) High purity determined by HPLC 6) No detergents need to be added in subsequent experiments, and it can be directly applied to cytological analysis |
| Applications |
1) Studying protein structure and function: Understanding the structure and activity of membrane proteins in a native-like environment. 2) Studying protein-protein and protein-ligand interactions: Analyzing how membrane proteins interact with other molecules, such as antibodies or other proteins. 3) Drug discovery: Identifying and characterizing potential drug candidates that target membrane proteins. 4) Developing antibodies: Screening and characterizing antibodies that bind to membrane proteins. |
| Format | Lyophilized protein |
| Expression System | Mammalian expression system |
| Note | For Research Use Only. |
| Storage | Store at -80°C for 12 months in lyophilized form. After reconstitution, if not intended for use within one month, aliquot and store at -80°C. Repeated freeze-thaw cycles should be avoided. |
| Shipping | Lyophilized proteins are shipped under ambient temperature conditions. |
| Target Gene | CHRNB3 |
| 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 (hetero)pentamers composed of homologous subunits. The subunits that make up the muscle and neuronal forms of nAChRs are encoded by separate genes and have different primary structure. There are several subtypes of neuronal nAChRs that vary based on which homologous subunits are arranged around the central channel. They are classified as alpha-subunits if, like muscle alpha-1 (MIM 100690), they have a pair of adjacent cysteines as part of the presumed acetylcholine binding site. Subunits lacking these cysteine residues are classified as beta-subunits (Groot Kormelink and Luyten, 1997 [PubMed 9009220]). Elliott et al. (1996) [PubMed 8906617] stated that the proposed structure for each subunit is a conserved N-terminal extracellular domain followed by 3 conserved transmembrane domains, a variable cytoplasmic loop, a fourth conserved transmembrane domain, and a short C-terminal extracellular region.[supplied by OMIM, Apr 2010] |
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