| Literature DB >> 35203397 |
Saeed Al Mahri1, Shuja Shafi Malik1, Maria Al Ibrahim1, Esraa Haji1, Ghida Dairi1,2,3, Sameer Mohammad1.
Abstract
Fatty acids (FFAs) are important biological molecules that serve as a major energy source and are key components of biological membranes. In addition, FFAs play important roles in metabolic regulation and contribute to the development and progression of metabolic disorders like diabetes. Recent studies have shown that FFAs can act as important ligands of G-protein-coupled receptors (GPCRs) on the surface of cells and impact key physiological processes. Free fatty acid-activated receptors include FFAR1 (GPR40), FFAR2 (GPR43), FFAR3 (GPR41), and FFAR4 (GPR120). FFAR2 and FFAR3 are activated by short-chain fatty acids like acetate, propionate, and butyrate, whereas FFAR1 and FFAR4 are activated by medium- and long-chain fatty acids like palmitate, oleate, linoleate, and others. FFARs have attracted considerable attention over the last few years and have become attractive pharmacological targets in the treatment of type 2 diabetes and metabolic syndrome. Several lines of evidence point to their importance in the regulation of whole-body metabolic homeostasis including adipose metabolism. Here, we summarize our current understanding of the physiological functions of FFAR isoforms in adipose biology and explore the prospect of FFAR-based therapies to treat patients with obesity and Type 2 diabetes.Entities:
Keywords: G-protein-coupled receptors; adipogenesis; adipose tissue; free fatty acid receptors; thermogenesis
Mesh:
Substances:
Year: 2022 PMID: 35203397 PMCID: PMC8870169 DOI: 10.3390/cells11040750
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Ligand specificity of free fatty acid receptors. FFAR1 and FFAR4 act as receptors for long chain fatty acids (LCFAs), whereas short chain fatty acids (SCFAs) selectively activate FFAR2 and FFAR3.
List of FFAR isoforms and their tissue distribution.
| Name | Major Expression Sites | References |
|---|---|---|
| FFAR1 | Pancreatic β-cells, enteroendocrine cells, nerves, immune cells | [ |
| FFAR2 | Adipose, enteroendocrine cells, pancreatic b-cells, immune cells | [ |
| FFAR3 | Pancreatic β-cells, enteroendocrine cells, nerves | [ |
| FFAR4 | Adipose, enteroendocrine cells, liver, bone, lung, immune cells | [ |
Figure 2Physiological significance of FFAR4 in adipose tissue metabolism. Evidence from human, mouse, and in vitro studies.
List of synthetic agonists of FFAR isoforms and their physiological actions.
| Agonist Name | Target | Physiological Functions | Reference |
|---|---|---|---|
| TAK-875 | FFAR1 | Stimulates glucose-dependent Insulin secretion and Improves glycemic control in T2DM patients | [ |
| AMG837 | FFAR1 | Increases insulin secretion and lowers blood glucose levels in mice | [ |
| GW-9508 | FFAR1 | Enhances insulin sensitivity and regulates glucose homeostasis | [ |
| TUG-424 | FFAR1 | Improves glucose tolerance in mice | [ |
| AM-1638 | FFAR1 | Increases insulin secretion and lowers blood glucose levels in mice | [ |
| AM-5262 | FFAR1 | Enhances glucose-stimulated insulin secretion (mouse and human islets) and improves glucose homeostasis in mice | [ |
| LY2881835 | FFAR1 | Stimulates insulin secretion from pancreatic β-cells | [ |
| MK-2305 | FFAR1 | Increases glucose-stimulated insulin secretion, resulting in improvement of glucose homeostasis in the diabetic mice | [ |
| CMTB | FFAR2 | Inhibits lipolysis in murine adipocytes | [ |
| TUG-1375 | FFAR2 | Induces migration of human neutrophils and inhibits lipolysis in murine adipocytes | [ |
| Compound 1 | FFAR2 | Inhibits lipolysis in murine adipocytes | [ |
| TUG-891 | FFAR4 | Stimulates GLP-1 secretion from enteroendocrine cells, enhances glucose uptake in 3T3-L1 adipocytes | [ |
| AZ13581837 | FFAR4 | Increases insulin secretion and reduces blood glucose levels in mice | [ |
| CpdA | FFAR4 | Increases insulin sensitivity and improves glucose tolerance in mice | [ |
| Metabolex-36 | FFAR4 | Insulin secretagogue with glucose-lowering properties | [ |
| GSK137647 | FFAR4 | Improves glucose tolerance | [ |
| TUG-1197 | FFAR4 | Enhances insulin sensitivity and reducesbody weightt | [ |
| NCG21 | FFAR4 | Increases GLP-1 secretion | [ |
| GW9508 | FFAR4 | Enhances insulin sensitivity and thermogenic activity of adipocytes | [ |