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== Structure ==
== Structure ==
[[Image:HGPR40bind2.png|200 px|right|thumb|Figure 1. Second proposed binding site of hGPR40 with surface shown. Substrate would bind in the deep pocket shown between TM3, 4, and 5.]]
[[Image:HGPR40bind2.png|200 px|right|thumb|Figure 1. Second proposed binding site of hGPR40 with surface shown. Substrate would bind in the deep pocket shown between TM3, 4, and 5.]]
Like most G-protein coupled receptors, hGPR40 contains <scene name='72/721541/Top_view_transmembrane_helices/2'>seven transmembrane helices</scene> (<scene name='72/721541/Top_view_transmembrane_helices/1'>top view of TM helices</scene>). To obtain a [https://en.wikipedia.org/wiki/Protein_crystallization crystallized structure] of the protein, four <scene name='72/721541/Stabilizing_mutations/4'>stabilizing mutations</scene> (<scene name='72/721541/L42a/3'>L42A</scene>, <scene name='72/721541/F88a/4'>F88A</scene>, <scene name='72/721541/G103a/3'>G103A</scene>, <scene name='72/721541/Y202f/3'>Y202F</scene>) were made to increase expression levels and thermal stability of the protein. These mutations did not significantly impact the enzyme's binding affinity with a known agonist, TAK-875.<ref name="Srivastava"/> A <scene name='72/721541/Lysozyme_crimson/2'>T4 Lysozyme</scene> (shown in <FONT COLOR="#DC143C">crimson</FONT>) was also added to intracellular loop 3 to aid in the formation of crystals. T4 Lysozyme also had little effect on TAK-875 binding.<ref name="Srivastava"/> For clarity, lysozyme is removed in all further renderings of hGPR40. hGPR40 also contains an extracellular loop that is conserved among most G-protein coupled receptors (ECL2). This loop has two subsections and is involved in the permeability of the binding site.
Like most G-protein coupled receptors, hGPR40 contains <scene name='72/721541/Top_view_transmembrane_helices/2'>seven transmembrane helices</scene> (<scene name='72/721541/Top_view_transmembrane_helices/1'>top view of TM helices</scene>). To obtain a [https://en.wikipedia.org/wiki/Protein_crystallization crystallized structure] of the protein, four <scene name='72/721541/Stabilizing_mutations/4'>stabilizing mutations</scene> (<scene name='72/721541/L42a/3'>L42A</scene>, <scene name='72/721541/F88a/4'>F88A</scene>, <scene name='72/721541/G103a/3'>G103A</scene>, <scene name='72/721541/Y202f/3'>Y202F</scene>) were made to increase expression levels and thermal stability of the protein. These mutations did not significantly impact the enzyme's binding affinity with a known agonist, TAK-875.<ref name="Srivastava"/> A <scene name='72/721541/Lysozyme_crimson/2'>T4 Lysozyme</scene> (shown in <FONT COLOR="#DC143C">'''crimson'''</FONT>) was also added to intracellular loop 3 to aid in the formation of crystals. T4 Lysozyme also had little effect on TAK-875 binding.<ref name="Srivastava"/> For clarity, lysozyme is removed in all further renderings of hGPR40. hGPR40 also contains an extracellular loop that is conserved among most G-protein coupled receptors (ECL2). This loop has two subsections and is involved in the permeability of the binding site.


=== Binding Sites ===
=== Binding Sites ===
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=== ECL2 ===
=== ECL2 ===
hGPR40 contains a highly conserved hairpin 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 auxiliary loop. 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 <FONT COLOR="#FF00FF">auxiliary loop</FONT> 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 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 auxiliary loop. 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 <FONT COLOR="#FF00FF">'''auxiliary loop'''</FONT> 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 ==

Revision as of 19:57, 13 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