Mouse Anti-FFAR4 Recombinant Antibody (EG1368) (V2LY-0925-LY1319)

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Published Data
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Datasheet Target References Q & As Review & reward Protocols Associated Products

Basic Information

Host Animal
Mouse
Clone
EG1368
Application
WB, IP, IF, ELISA
Immunogen
Amino acids 78-232 mapping at the C-terminus of human GPR120.
Host Species
Mouse
Specificity
Human, Mouse, Rat
Antibody Isotype
IgG1, κ
Clonality
Monoclonal
Application Notes
ApplicationNote
WB1:100-1:1,000
IP1-2 µg per 100-500 µg of total protein (1 ml of cell lysate)
IF(ICC)1:50-1:500
ELISA1:100-1:1,000

Formulations & Storage [For reference only, actual COA shall prevail!]

Format
Liquid
Buffer
Gelatin & PBS
Preservative
Sodium azide
Concentration
0.2 mg/ml
Purity
> 95% Purity determined by SDS-PAGE.
Storage
Store at +4°C short term (1-2 weeks). Aliquot and store at -20°C long term. Avoid repeated freeze/thaw cycles.
More Infomation

Target

Full Name
free fatty acid receptor 4
Entrez Gene ID
Human338557
Mouse107221
Rat294075
UniProt ID
HumanQ5NUL3
MouseQ7TMA4
RatQ2AC31
Biological Process
Brown fat cell differentiation Source: UniProtKB
Ghrelin secretion Source: UniProtKB
G protein-coupled receptor signaling pathway Source: GO_Central
Hormone secretion Source: GO_Central
Inflammatory response Source: UniProtKB-KW
Negative regulation of apoptotic process Source: UniProtKB
Negative regulation of cytokine production Source: UniProtKB
Negative regulation of inflammatory response Source: UniProtKB
Negative regulation of interleukin-1 beta production Source: UniProtKB
Negative regulation of somatostatin secretion Source: UniProtKB
Phospholipase C-activating G protein-coupled receptor signaling pathway Source: UniProtKB
Positive regulation of brown fat cell differentiation Source: Ensembl
Positive regulation of cAMP-mediated signaling Source: UniProtKB
Positive regulation of cold-induced thermogenesis Source: YuBioLab
Positive regulation of cytosolic calcium ion concentration Source: UniProtKB
Positive regulation of ERK1 and ERK2 cascade Source: UniProtKB
Positive regulation of glucagon secretion Source: UniProtKB
Positive regulation of osteoblast differentiation Source: UniProtKB
Regulation of glucose transmembrane transport Source: UniProtKB
White fat cell differentiation Source: UniProtKB
Cellular Location
Isoform 1: Cell membrane; Lysosome membrane; Endosome membrane. Sorted to late endosome/lysosome compartments upon internalization.
Isoform 2: Cell membrane; Cilium membrane; Lysosome membrane; Endosome membrane. Sorted to late endosome/lysosome compartments upon internalization (PubMed:22282525). Specifically localizes to the primary cilium of undifferentiated adipocytes. Ciliary trafficking is TULP3-dependent. As the cilium is lost during adipogenesis, moves to the plasma membrane (Probable).
Topology
Extracellular: 1-45
Helical: 46-66
Cytoplasmic: 67-77
Helical: 78-98
Extracellular: 99-112
Helical: 113-133
Cytoplasmic: 134-156
Helical: 157-177
Extracellular: 178-204
Helical: 205-225
Cytoplasmic: 226-268
Helical: 269-289
Extracellular: 290-295
Helical: 296-316
Cytoplasmic: 317-361
PTM
Phosphorylated at two clusters of Ser and Thr residues located in the intracellular C-terminus, a prerequisite for FFAR4 internalization via an ARRB2-dependent pathway.

Zhang, N., Murphy, K. A., Harsch, B., Zhang, M., Gyberg, D. J., Wagner, B. M., ... & O'Connell, T. (2022). Free fatty acid receptor 4 (FFAR4) regulates cardiac oxylipin balance to promote inflammation resolution in a model of heart failure preserved ejection fraction secondary to metabolic syndrome. bioRxiv.

Yang, L., Wang, B., Guo, F., Huang, R., Liang, Y., Li, L., ... & Ma, L. (2022). FFAR4 improves the senescence of tubular epithelial cells by AMPK/SirT3 signaling in acute kidney injury. Signal Transduction and Targeted Therapy, 7(1), 1-15.

Stuttgen, G. M., & Sahoo, D. (2021). FFAR4: a new player in cardiometabolic disease?. Endocrinology, 162(8).

Kiepura, A., Stachyra, K., & Olszanecki, R. (2021). Anti-atherosclerotic potential of free fatty acid receptor 4 (FFAR4). Biomedicines, 9(5), 467.

Mishra, S., Rajput, M. S., Rathore, D., & Dahima, R. (2021). Ligand and structure-based computational designing of multi-target molecules directing FFAR-1, FFAR-4 and PPAR-G as modulators of insulin receptor activity. Journal of Biomolecular Structure and Dynamics, 1-15.

Carullo, G., Mazzotta, S., Vega-Holm, M., Iglesias-Guerra, F., Vega-Pérez, J. M., Aiello, F., & Brizzi, A. (2021). GPR120/FFAR4 pharmacology: focus on agonists in type 2 diabetes mellitus drug discovery. Journal of Medicinal Chemistry, 64(8), 4312-4332.

Husted, A. S., Ekberg, J. H., Tripp, E., Nissen, T. A., Meijnikman, S., O'Brien, S. L., ... & Schwartz, T. W. (2020). Autocrine negative feedback regulation of lipolysis through sensing of NEFAs by FFAR4/GPR120 in WAT. Molecular metabolism, 42, 101103.

Tsuchiya, Y., Hayashi, M., Nagamatsu, K., Ono, T., Kamakura, M., Iwata, T., & Nakashima, T. (2020). The key royal jelly component 10-hydroxy-2-decenoic acid protects against bone loss by inhibiting NF-κB signaling downstream of FFAR4. Journal of Biological Chemistry, 295(34), 12224-12232.

Costanzo, A., Liu, D., Nowson, C., Duesing, K., Archer, N., Bowe, S., & Keast, R. (2019). A low-fat diet up-regulates expression of fatty acid taste receptor gene FFAR4 in fungiform papillae in humans: A co-twin randomised controlled trial. British journal of nutrition, 122(11), 1212-1220.

Chu, X., Zhou, Q., Xu, Y., Jiang, J., Li, Q., Zhou, Q., ... & Zhang, Y. (2019). Aberrant fatty acid profile and FFAR4 signaling confer endocrine resistance in breast cancer. Journal of Experimental & Clinical Cancer Research, 38(1), 1-18.

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For research use only. Not intended for any clinical use.

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