Comparison

FFAR3 Antibody

Item no. OACA02966
Manufacturer AVIVA Systems Biology
Amount 50 ug
Category
Type Antibody Polyclonal
Format Liquid
Applications IF, IHC, ELISA
Specific against Human (Homo sapiens)
Host Rabbit
Isotype IgG
Conjugate/Tag Unconjugated
Purity >95%
ECLASS 10.1 32160702
ECLASS 11.0 32160702
UNSPSC 12352203
Alias FFA3R;free fatty acid receptor 3;GPR41;GPR42;G-protein coupled receptor 41.
Shipping Condition Cool pack
Available
Manufacturer - Type
Polyclonal Antibody
Manufacturer - Category
Root Catalog/Products/Polyclonal Antibodies, Root Catalog/Products/Primary Antibodies
Shipping Temperature
Wet Ice
Gene symbol
FFAR3
Gene Fullname
free fatty acid receptor 3
Product format
Liquid
Reconstitution and storage
-20°C or -80°C
Description of target
G protein-coupled receptor that is activated by a major product of dietary fiber digestion, the short chain fatty acids (SCFAs), and that plays a role in the regulation of whole-body energy homeostasis and in intestinal immunity. In omnivorous mammals, the short chain fatty acids acetate, propionate and butyrate are produced primarily by the gut microbiome that metabolizes dietary fibers. SCFAs serve as a source of energy but also act as signaling molecules. That G protein-coupled receptor is probably coupled to the pertussis toxin-sensitive, G(i/o)-alpha family of G proteins. Its activation results in the formation of inositol 1, 4, 5-trisphosphate, the mobilization of intracellular calcium, the phosphorylation of the MAPK3/ERK1 and MAPK1/ERK2 kinases and the inhibition of intracellular cAMP accumulation (PubMed:12711604). Activated by SCFAs and by beta-hydroxybutyrate, a ketone body produced by the liver upon starvation, it inhibits N-type calcium channels and modulates the activity of sympathetic neurons through a signaling cascade involving the beta and gamma subunits of its coupled G protein, phospholipase C and MAP kinases. Thereby, it may regulate energy expenditure through the control of the sympathetic nervous system that controls for instance heart rate. Upon activation by SCFAs accumulating in the intestine, it may also signal to the brain via neural circuits which in turn would regulate intestinal gluconeogenesis. May also control the production of hormones involved in whole-body energy homeostasis. May for instance, regulate blood pressure through renin secretion. May also regulate secretion of the PYY peptide by enteroendocrine cells and control gut motility, intestinal transit rate, and the harvesting of energy from SCFAs produced by gut microbiota. May also indirectly regulate the production of LEP/Leptin, a hormone acting on the CNS to inhibit food intake, in response to the presence of short-chain fatty acids in the intestine. Finally, may also play a role in glucose homeostasis. Besides its role in energy homeostasis, may play a role in intestinal immunity. May mediate the activation of the inflammatory and immune response by SCFAs in the gut, regulating the rapid production of chemokines and cytokines by intestinal epithelial cells. Among SCFAs, the fatty acids containing less than 6 carbons, the most potent activators are probably propionate, butyrate and pentanoate while acetate is a poor activator (PubMed:12496283, PubMed:12711604).
Nucleotide accession_num
NM_005304
Protein accession_num
NP_005295
Protein name
Free fatty acid receptor 3
Clonality
Polyclonal
Purification
Protein G Purified
Immunogen
Recombinant Human Free fatty acid receptor 3 protein (280-346AA)
Formulation
50% Glycerol, 0.01M PBS, PH 7.4

Note: The presented information and documents (Manual, Product Datasheet, Safety Datasheet and Certificate of Analysis) correspond to our latest update and should serve for orientational purpose only. We do not guarantee the topicality. We would kindly ask you to make a request for specific requirements, if necessary.

All products are intended for research use only (RUO). Not for human, veterinary or therapeutic use.

Amount: 50 ug
Available: In stock
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