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Free fatty acid receptor 3 (for GPR41) and Free fatty acid receptor 2 (for GPR43) (FFAR3 (GPR41), FFAR2 (GPR43))

Target
FFAR3 (GPR41), FFAR2 (GPR43)
Molecular classification
G protein-coupled receptor (GPCR), Receptor
01

Overview

Free fatty acid receptor 3 (FFAR3/GPR41) and free fatty acid receptor 2 (FFAR2/GPR43) are mammalian G protein-coupled receptors (GPCRs) primarily activated by short-chain fatty acids (SCFAs) such as acetate, propionate, and butyrate, which are produced by gut microbiota during the fermentation of dietary fiber. GPR41 and GPR43 are expressed in various tissues, notably adipocytes, colon epithelial cells, immune cells, and bone tissue. They play significant roles in mediating metabolic regulation, host-microbiome interactions, immune responses, and bone metabolism. Both receptors have been implicated in the pathogenesis and treatment of conditions like obesity, inflammatory diseases (such as colitis, arthritis, and asthma), and potentially cancer. GPR43, in particular, has shown protective effects in animal models of inflammatory diseases, and synthetic agonists targeting it are under investigation. The biological roles of these receptors are complex and context-dependent, with variable protective or causative effects reported depending on tissue type, specific disease model, and experimental conditions

Other names
Free fatty acid receptor 3FFAR3Free fatty acid receptor 2FFAR2SCFA receptorshort-chain fatty acid receptor
02

Mechanism of action

Drugs/agonists targeting GPR43/FFAR2 modulate immune and inflammatory responses through activation by short-chain fatty acids, notably acetate, propionate, and butyrate Activation can reduce severity of inflammatory diseases and impact metabolic signaling

03

Biological functions

Signal transductionMediating host-microbiome interactionsRegulation of energy balanceImmune response modulationRegulation of inflammationBone metabolism
04

Disease associations

ObesityInflammationColitisAsthmaArthritisCancer (associated with FFAR2)
05

Safety considerations

Tissue-specific and context-dependent roles can complicate therapeutic targeting; receptors can be protective or causative depending on disease and modelLack of highly selective ligands and validated antibodies for detection complicates safety and specificity assessment
06

Interacting drugs

GPR43 agonists (specific synthetic allosteric agonists have been used experimentally)

1 more in the full profile.

07

Biomarkers

Expression levels of GPR41/FFAR3 and GPR43/FFAR2 in immune or adipose tissue may serve as potential biomarkers for metabolic and inflammatory disease activity, although no validated clinical biomarkers are in routine use

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