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=== ECL2 ===
=== ECL2 ===
hGPR40 contains a highly conserved hairpin extracellular loop. This extracellular loop (<scene name='72/721541/Ecl2/3'>ECL2</scene>) is the longest and most divergent of the extracellular loops found in proteins. The loop is accompanied by a [https://en.wikibooks.org/wiki/Structural_Biochemistry/Chemical_Bonding/_Disulfide_bonds disulfide bond] (<scene name='72/721541/Cysteine_bridge/3'>Cys79 and Cys170</scene>) that forms between transmembrane helix 4 and the C-terminus of the ECL2 loop. In hGPR40, ECL2 has two sections: a <FONT COLOR="#00FFFF">'''beta sheet'''</FONT> and an <FONT COLOR="#FF00FF">'''auxiliary loop'''</FONT>. The [https://en.wikipedia.org/wiki/Beta_sheet beta sheet] spans helices 4 and 5 and is shorter in hGPR40 than in other GPCRs. The ECL2 of hGPR40 also differs from that of other proteins because it contains an auxiliary loop of 13 extra residues. The entire extracellular loop has low mobility and flexibility which allows it to act as a cap for the binding pocket. The only exception to the low flexibility is the tip of the auxiliary loop, which corresponds to residues Asp152-Asn155. This area of greater mobility allows for substrates to enter the binding site.<ref name="Srivastava"/>
hGPR40 contains a highly conserved hairpin extracellular loop. This extracellular loop (<scene name='72/721541/Ecl2/4'>ECL2</scene>) is the longest and most divergent of the extracellular loops found in proteins (<scene name='72/721541/Ecl2_top/2'>top view of ECL2</scene>). The loop is accompanied by a [https://en.wikibooks.org/wiki/Structural_Biochemistry/Chemical_Bonding/_Disulfide_bonds disulfide bond] (<scene name='72/721541/Cysteine_bridge/3'>Cys79 and Cys170</scene>) that forms between transmembrane helix 4 and the C-terminus of the ECL2 loop. In hGPR40, ECL2 has two sections: a <FONT COLOR="#00FFFF">'''beta sheet'''</FONT> and an <FONT COLOR="#FF00FF">'''auxiliary loop'''</FONT>. The [https://en.wikipedia.org/wiki/Beta_sheet beta sheet] spans helices 4 and 5 and is shorter in hGPR40 than in other GPCRs. The ECL2 of hGPR40 also differs from that of other proteins because it contains an auxiliary loop of 13 extra residues. The entire extracellular loop has low mobility and flexibility which allows it to act as a cap for the binding pocket. The only exception to the low flexibility is the tip of the auxiliary loop, which corresponds to residues Asp152-Asn155. This area of greater mobility allows for substrates to enter the binding site.<ref name="Srivastava"/>


== Function ==
== Function ==
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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 ===

Latest revision as of 02:49, 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