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Crystallographic and Functional Characterization of the Fluorodifen-inducible Glutathione Transferase from Glycine max Reveals an Active Site Topography Suited for Diphenylether Herbicides and a Novel L-site

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dc.contributor.author Axarli, I en
dc.contributor.author Dhavala, P en
dc.contributor.author Papageorgiou, AC en
dc.contributor.author Labrou, NE en
dc.date.accessioned 2014-06-06T06:49:18Z
dc.date.available 2014-06-06T06:49:18Z
dc.date.issued 2009 en
dc.identifier.issn 00222836 en
dc.identifier.uri http://dx.doi.org/10.1016/j.jmb.2008.10.084 en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/4517
dc.subject diphenylether herbicides en
dc.subject fluorodifen en
dc.subject herbicide detoxification en
dc.subject tau class GST en
dc.subject X-ray structure en
dc.subject.other anion en
dc.subject.other diphenyl ether en
dc.subject.other fluorodifen induced glutathione transferase en
dc.subject.other glutathione derivative en
dc.subject.other glutathione transferase en
dc.subject.other herbicide en
dc.subject.other serine en
dc.subject.other unclassified drug en
dc.subject.other affinity chromatography en
dc.subject.other article en
dc.subject.other catalysis en
dc.subject.other conjugation en
dc.subject.other controlled study en
dc.subject.other crystal structure en
dc.subject.other enzyme active site en
dc.subject.other enzyme activity en
dc.subject.other enzyme analysis en
dc.subject.other enzyme purification en
dc.subject.other enzyme specificity en
dc.subject.other enzyme stability en
dc.subject.other Escherichia coli en
dc.subject.other ligand binding en
dc.subject.other molecular cloning en
dc.subject.other molecular model en
dc.subject.other priority journal en
dc.subject.other protein expression en
dc.subject.other protein function en
dc.subject.other site directed mutagenesis en
dc.subject.other soybean en
dc.subject.other structure analysis en
dc.subject.other topography en
dc.subject.other X ray crystallography en
dc.subject.other Amino Acid Sequence en
dc.subject.other Binding Sites en
dc.subject.other Catalytic Domain en
dc.subject.other Crystallization en
dc.subject.other Enzyme Induction en
dc.subject.other Glutathione en
dc.subject.other Glutathione Transferase en
dc.subject.other Halogenated Diphenyl Ethers en
dc.subject.other Herbicides en
dc.subject.other Kinetics en
dc.subject.other Models, Molecular en
dc.subject.other Molecular Sequence Data en
dc.subject.other Mutagenesis, Site-Directed en
dc.subject.other Sequence Homology, Amino Acid en
dc.subject.other Soybeans en
dc.subject.other Escherichia coli en
dc.subject.other Glycine max en
dc.title Crystallographic and Functional Characterization of the Fluorodifen-inducible Glutathione Transferase from Glycine max Reveals an Active Site Topography Suited for Diphenylether Herbicides and a Novel L-site en
heal.type journalArticle en
heal.identifier.primary 10.1016/j.jmb.2008.10.084 en
heal.publicationDate 2009 en
heal.abstract Glutathione transferases (GSTs) from the tau class (GSTU) are unique to plants and have important roles in stress tolerance and the detoxification of herbicides in crops and weeds. A fluorodifen-induced GST isoezyme (GmGSTU4-4) belonging to the tau class was purified from Glycine max by affinity chromatography. This isoenzyme was cloned and expressed in Escherichia coli, and its structural and catalytic properties were investigated. The structure of GmGSTU4-4 was determined at 1.75 Å resolution in complex with S-(p-nitrobenzyl)-glutathione (Nb-GSH). The enzyme adopts the canonical GST fold but with a number of functionally important differences. Compared with other plant GSTs, the three-dimensional structure of GmGSTU4-4 primarily shows structural differences in the hydrphobic substrate binding site, the linker segment and the C-terminal region. The X-ray structure identifies key amino acid residues in the hydrophobic binding site (H-site) and provides insights into the substrate specificity and catalytic mechanism of the enzyme. The isoenzyme was highly active in conjugating the diphenylether herbicide fluorodifen. A possible reaction pathway involving the conjugation of glutathione with fluorodifen is described based on site-directed mutagenesis and molecular modeling studies. A serine residue (Ser13) is present in the active site, at a position that would allow it to stabilise the thiolate anion of glutathione and enhance its nucleophilicity. Tyr107 and Arg111 present in the active site are important structural moieties that modulate the catalytic efficiency and specificity of the enzyme, and participate in kcat regulation by affecting the rate-limiting step of the catalytic reaction. A hitherto undescribed ligand-binding site (L-site) located in a surface pocket of the enzyme was also found. This site is formed by conserved residues, suggesting it may have an important functional role in the transfer and delivery of bound ligands, presumably to specific protein receptors. © 2008 Elsevier Ltd. All rights reserved. en
heal.journalName Journal of Molecular Biology en
dc.identifier.issue 3 en
dc.identifier.volume 385 en
dc.identifier.doi 10.1016/j.jmb.2008.10.084 en
dc.identifier.spage 984 en
dc.identifier.epage 1002 en


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