Crystal structures and kinetic studies of human Kappa class glutathione transferase provide insights into the catalytic mechanism
doi: 10.1042/bj20110753
pmid: 21728995
Crystal structures and kinetic studies of human Kappa class glutathione transferase provide insights into the catalytic mechanism
GSTs (glutathione transferases) are a family of enzymes that primarily catalyse nucleophilic addition of the thiol of GSH (reduced glutathione) to a variety of hydrophobic electrophiles in the cellular detoxification of cytotoxic and genotoxic compounds. GSTks (Kappa class GSTs) are a distinct class because of their unique cellular localization, function and structure. In the present paper we report the crystal structures of hGSTk (human GSTk) in apo-form and in complex with GTX (S-hexylglutathione) and steady-state kinetic studies, revealing insights into the catalytic mechanism of hGSTk and other GSTks. Substrate binding induces a conformational change of the active site from an ‘open’ conformation in the apo-form to a ‘closed’ conformation in the GTX-bound complex, facilitating formations of the G site (GSH-binding site) and the H site (hydrophobic substrate-binding site). The conserved Ser16 at the G site functions as the catalytic residue in the deprotonation of the thiol group and the conserved Asp69, Ser200, Asp201 and Arg202 form a network of interactions with γ-glutamyl carboxylate to stabilize the thiolate anion. The H site is a large hydrophobic pocket with conformational flexibility to allow the binding of different hydrophobic substrates. The kinetic mechanism of hGSTk conforms to a rapid equilibrium random sequential Bi Bi model.
- Medical Research Council United Kingdom
- Center for Excellence in Molecular Cell Science China (People's Republic of)
- MRC Laboratory of Molecular Biology United Kingdom
- Shanghai Institutes for Biological Sciences China (People's Republic of)
- Chinese Academy of Sciences China (People's Republic of)
Models, Molecular, Sequence Homology, Amino Acid, Protein Conformation, Molecular Sequence Data, Crystallography, X-Ray, Kinetics, Structure-Activity Relationship, Biocatalysis, Humans, Amino Acid Sequence, Glutathione Transferase
Models, Molecular, Sequence Homology, Amino Acid, Protein Conformation, Molecular Sequence Data, Crystallography, X-Ray, Kinetics, Structure-Activity Relationship, Biocatalysis, Humans, Amino Acid Sequence, Glutathione Transferase
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