Recombinant Human beta-3 Adrenergic R/ADRB3 Protein Summary
Description |
An untagged recombinant protein corresponding to the amino acid sequence of (NP_000016.1) for Human beta-3 Adrenergic R/ADRB3 Source: Wheat Germ (in vitro) with proprietary liposome technology Amino Acid Sequence: MAPWPHENSSLAPWPDLPTLAPNTANTSGLPGVPWEAALAGALLALAVLATVGGNLLVIVAIAWTPRLQTMTNVFVTSLAAADLVMGLLVVPPAATLALTGHWPLGATGCELWTSVDVLCVTASIETLCALAVDRYLAVTNPLRYGALVTKRCARTAVVLVWVVSAAVSFAPIMSQWWRVGADAEAQRCHSNPRCCAFASNMPYVLLSSSVSFYLPLLVMLFVYARVFVVATRQLRLLRGELGRFPPEESPPAPSRSLAPAPVGTCAPPEGVPACGRRPARLLPLREHRALCTLGLIMGTFTLCWLPFFLANVLRALGGPSLVPGPAFLALNWLGYANSAFNPLIYCRSPDFRSAFRRLLCRCGRRLPPEPCAAARPALFPSGVPAARSSPAQPRLCQRLDGASWGVS |
Preparation Method |
in vitro wheat germ expression system with proprietary liposome technology |
Details of Functionality |
This protein was produced in an in vitro wheat germ expression system that should preserve correct conformational folding that is necessary for biological function. While it is possible that this protein could display some level of activity, the functionality of this protein has not been explicitly measured or validated. |
Source |
Wheat germ |
Protein/Peptide Type |
Recombinant Protein |
Gene |
ADRB3 |
Purity |
>80% by SDS-PAGE and Coomassie blue staining |
Applications/Dilutions
Dilutions |
- Immunoaffinity Purification
|
Theoretical MW |
43.5 kDa. Disclaimer note: The observed molecular weight of the protein may vary from the listed predicted molecular weight due to post translational modifications, post translation cleavages, relative charges, and other experimental factors. |
Packaging, Storage & Formulations
Storage |
Store at -80C. Avoid freeze-thaw cycles. |
Buffer |
25 mM Tris-HCl pH8.0 in 2% glycerol. |
Preservative |
Glycerol |
Purity |
>80% by SDS-PAGE and Coomassie blue staining |
Notes
This product is produced by and distributed for Abnova, a company based in Taiwan.
Alternate Names for Recombinant Human beta-3 Adrenergic R/ADRB3 Protein
Background
The Beta-3 Adrenoceptor (ADRB3) is an Adrenergic Receptor that stimulates lipolysis and increases fatty acids in the blood. Stimulation of the beta-3 adrenoceptor leads to lipolysis in white adipocytes and nonshivering thermogenesis in brown fat. The beta-3 adrenoceptor has also been suggested to affect the physiological control of cardiac and vascular contractility; beta-3 adrenoceptor stimulation decreases cardiac contractility through activation of a nitric oxide synthase pathway. A variant of the beta-3 adrenoceptor, Trp64Arg, has been shown to be associated with weight gain (obesity) and susceptibility to non-insulin-dependent diabetes mellitus (NIDDM), but not with coronary artery disease. Trp64Arg variant receptor has been shown to predict a greater tendency to develop abdominal adiposity and high blood pressure with advancing age. ADRB3 has been suggested to be responsible for the negative inotropic effects of catecholamines and may be involved in pathophysiological mechanisms leading to heart failure; ADRB3 is also one of the molecular targets under active research in the treatment of obeisity. Beta-3 adrenoceptor expression has been documented in adipose, heart, and in smooth muscle of digestive and urinary tract organs (bladder, colon, small intestine, stomach, ureter). Utilization of alternate promoters and/or 3-prime untranslated regions may result in tissue-specific regulation of the expression of ADRB3. ESTs have been isolated from heart/melanocyte/uterus and placenta libraries.
Limitations
This product is for research use only and is not approved for use in humans or in clinical diagnosis. Peptides and proteins are
guaranteed for 3 months from date of receipt.
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