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== Clinical Relevance ==
== Clinical Relevance ==
By signaling predominantly through G<sub>aq/11</sub>, hGPR40 increases intracellular calcium and activates phospholipases to generate diacylglycerols resulting in increased insulin secretion. Synthetic small-molecule agonists of GPR40 enhance insulin secretion in a glucose dependent manner [http://www.merriam-webster.com/medical/in%20vitro in vitro] and [http://www.merriam-webster.com/medical/in%20vivo in vivo] with a mechanism similar to that found with fatty acids. GPR40 agonists have shown efficacy in increasing insulin secretion and lowering blood glucose in rodent models of type 2 diabetes.<ref name="Burant"/>
By signaling predominantly through G<sub>aq/11</sub>, hGPR40 increases intracellular calcium and activates phospholipases to generate diacylglycerols resulting in increased insulin secretion. Synthetic small-molecule agonists of hGPR40 enhance insulin secretion in a glucose dependent manner [http://www.merriam-webster.com/medical/in%20vitro in vitro] and [http://www.merriam-webster.com/medical/in%20vivo in vivo] with a mechanism similar to that found with fatty acids. hGPR40 agonists have shown efficacy in increasing insulin secretion and lowering blood glucose in rodent models of type 2 diabetes.<ref name="Burant"/>


=== TAK-875 ===
=== TAK-875 ===

Revision as of 01:52, 19 April 2016

Human GPR40 (hGPR40), also known as Free Fatty Acid Receptor 1 (FFAR1)

Human G-Protein Receptor 40 (hGPR40) visualized at 2.3Å resolution by X-ray crystallography (PDB: 4PHU). The natural substrates of this protein are free fatty acids, giving rise to its secondary name, Free Fatty Acid Receptor 1 (FFAR1).

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References