Journal:FEBS Open Bio:2: Difference between revisions

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Ligand binding at each site appeared to be largely determined through hydrophobic interactions. The crystallographic studies support previous conclusions made on ligand binding in noncatalytic sites by ''At''GSTF2 based on isothermal calorimetry experiments (Dixon ''et al''. (2011)<ref>pmid 21631432 </ref>) and suggest a mode of ligand binding in GSTs commensurate with a possible role in ligand transport.
Ligand binding at each site appeared to be largely determined through hydrophobic interactions. The crystallographic studies support previous conclusions made on ligand binding in noncatalytic sites by ''At''GSTF2 based on isothermal calorimetry experiments (Dixon ''et al''. (2011)<ref>pmid 21631432 </ref>) and suggest a mode of ligand binding in GSTs commensurate with a possible role in ligand transport.


Electrostatic surface views of AtGSTF2 ({{Template:ColorKey_Charge_Anionic}} / {{Template:ColorKey_Charge_Cationic}} / <font color='powderblue'><b>Histidine</b></font> / White Neutral):  
Electrostatic surface views of AtGSTF2 ({{Template:ColorKey_Charge_Anionic}} / {{Template:ColorKey_Charge_Cationic}} / <font color='powderblue'><b>Histidine (+)</b></font> / White Neutral):  
*<scene name='76/763766/Cv1/23'>Same view as in scene with complex with two molecules of S-hexyl glutathione</scene> ([[1gnw]]).
*<scene name='76/763766/Cv1/23'>Same view as in scene with complex with two molecules of S-hexyl glutathione</scene> ([[1gnw]]).
*<scene name='76/763766/Cv1/26'>In complex with quercetrin 3, rotated 90°, and revealing ligand-binding site L1</scene> ([[5a4w]]).
*<scene name='76/763766/Cv1/26'>In complex with quercetrin 3, rotated 90°, and revealing ligand-binding site L1</scene> ([[5a4w]]).

Revision as of 11:52, 3 October 2017

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This page complements a publication in scientific journals and is one of the Proteopedia's Interactive 3D Complement pages. For additional details please see I3DC.