AbstractA hydrophobic lock-and-key intersubunit motif involving a phenylalanine is a major structural feature conserved at the dimer interface of classes alpha, mu and pi glutathione transferases. In order to determine the contribution of this subunit interaction towards the function and stability of human class alpha GSTA1-1, the interaction was truncated by replacing the phenylalanine ‘key’ Phe-51 with serine. The F51S mutant protein is dimeric with a native-like core structure indicating that Phe-51 is not essential for dimerization. The mutation impacts on catalytic and ligandin function suggesting that tertiary structural changes have occurred at/near the active and non-substrate ligand-binding sites. The active site appears to be disr...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
AbstractBackground: Glutathione transferases (GSTs) constitute a family of isoenzymes that catalyze ...
AbstractA hydrophobic lock-and-key intersubunit motif involving a phenylalanine is a major structura...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
A topologically conserved residue in a-helix 6 of domain II of\ud human glutathione transferase (hGS...
A topologically conserved residue in a-helix 6 of domain II of human glutathione transferase (hGST)...
A topologically conserved residue in a-helix 6 of domain II of human glutathione transferase (hGST)...
The common fold shared by members of the glutathione-transferase (GST) family has a topologically co...
A number of active site mutants of human Alpha class glutathione transferase A1-1 (hGST A1-1) were m...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Glutathione transferases (GSTs) are dimeric enzymes containing one active-site per monomer. The omeg...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
AbstractBackground: Glutathione transferases (GSTs) constitute a family of isoenzymes that catalyze ...
AbstractA hydrophobic lock-and-key intersubunit motif involving a phenylalanine is a major structura...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
The glutathione transferases (GSTs) represent a superfamily of dimeric proteins involved in cellular...
A topologically conserved residue in a-helix 6 of domain II of\ud human glutathione transferase (hGS...
A topologically conserved residue in a-helix 6 of domain II of human glutathione transferase (hGST)...
A topologically conserved residue in a-helix 6 of domain II of human glutathione transferase (hGST)...
The common fold shared by members of the glutathione-transferase (GST) family has a topologically co...
A number of active site mutants of human Alpha class glutathione transferase A1-1 (hGST A1-1) were m...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Glutathione transferases (GSTs) are dimeric enzymes containing one active-site per monomer. The omeg...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an...
AbstractBackground: Glutathione transferases (GSTs) constitute a family of isoenzymes that catalyze ...