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G protein-coupled receptor 41 (GPR41), G protein-coupled receptor 43 (GPR43), and hydroxycarboxylic acid receptor 2 (HCAR2, also known as GPR109A) (GPR41, GPR43, HCAR2)

Target
GPR41, GPR43, HCAR2
Molecular classification
Receptor, G protein-coupled receptor (GPCR), Metabolite-sensing GPCR[1][4]
01

Overview

"Butyrate receptors" refer collectively to a group of metabolite-sensing cell surface proteins belonging to the **G protein-coupled receptor** family that detect the presence of the short-chain fatty acid *butyrate* along with other related molecules. The primary human proteins involved are **G protein-coupled receptor 41** (*also called* free fatty acid receptor 3 / FFAR3), **G protein-coupled receptor 43** (*free fatty acid receptor 2 / FFAR2*), and **hydroxycarboxylic acid receptor 2** (*also called* niacin/butyrate/nicotinate/salicylates-sensitive GPCR; *gene name*: HCAR2 / formerly known as *GPR109A*) [1][4]. These receptors play key roles in mediating cellular responses to gut microbiota-derived metabolites such as butyrate. They are expressed across multiple tissues—including immune cells where they regulate inflammatory responses; metabolic organs where they influence energy homeostasis; heart muscle where they can reduce contractility upon activation; neurons where they may protect against amyloid formation—and more [6][8]. Their physiological actions include dampening inflammation, promoting regulatory T-cell differentiation, controlling chemotaxis/migration of dendritic cells, regulating cardiac contractility via calcium handling mechanisms [6], influencing glucose/lipid metabolism [4], among others. Because "Butyrate Receptor" is not a unique molecular entity—but rather an umbrella term covering several distinct yet related proteins—it is important when structuring data or designing experiments/drugs/interventions that each individual gene/protein be considered separately according to its specific properties and tissue distribution [1].

Other names
Free fatty acid receptor 3 (FFAR3) for GPR41Free fatty acid receptor 2 (FFAR2) for GPR43Hydroxycarboxylic acid receptor 2 (HCAR2) or niacin receptor for GPR109AShort-chain fatty acid receptorsSCFA receptors
02

Mechanism of action

– Agonism at GPCRs leading to downstream signaling changes in immune cells, metabolic tissues, neurons, cardiomyocytes; typically anti-inflammatory or regulatory in nature depending on cell type activated.[1][6][8] – For HCAR2/GPR109A: Gi/o-protein coupling leads to decreased cAMP levels. – For FFAR3/GPR41 & FFAR2/GPR43: Activation modulates various intracellular pathways including cAMP reduction or phosphatidylinositol pathway activation.[6]

03

Biological functions

Signal transduction[1][4]Immune response modulation[1]Regulation of energy balance and metabolism[3]Inhibition of histone deacetylases by butyrate itself—not the GPCRs directly—but relevant to its biological effects[1][3]
04

Disease associations

Inflammation/anti-inflammatory signaling[1][4]Metabolic diseases including obesity and diabetes[4]Cardiovascular disease via direct effects on cardiomyocytes through GPR41 activation by butyrate[6]Neurodegenerative disease risk modification via anti-inflammatory pathways and amyloidogenesis inhibition in neuronal cells through GPCR signaling by butyrate agonism[8]
05

Safety considerations

No major safety concerns have been reported from targeting these endogenous pathways with dietary interventions. However,Systemic modulation could theoretically affect immune function broadly due to their role in inflammation regulation.[1]Off-target effects possible if synthetic ligands are developed due to broad expression patterns.
06

Interacting drugs

Butyric acid/butyrate supplements/derivatives such as sodium butyrate act as endogenous agonists for all three main receptors.

2 more in the full profile.

07

Biomarkers

No established clinical biomarkers specific for patient selection based solely on these targets. However,Expression levels of FFAR3/FFAR2/HCAR2 in tissue may serve as research biomarkers.Circulating levels of short-chain fatty acids may reflect activity/exposure.

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