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The Biochemical Journal|November 5, 1999
An approach to optimizing the active site in a glutathione transferase by evolution in vitroL O Hansson, M Widersten, B MannervikBiochemical and Biophysical Research Communications|April 25, 2000
Tyrosine 50 at the subunit interface of dimeric human glutathione transferase P1-1 is a structural key residue for modulating protein stability and catalytic functionG Stenberg, A M Abdalla, B MannervikBiochimica Et Biophysica Acta|September 18, 1981
Effect of inducers of drug-metabolizing enzymes on glutathione reductase and glutathione peroxidase in rat liverI Carlberg, J W Depierre, B MannervikBiochemistry|September 16, 1997
Mechanism-based phage display selection of active-site mutants of human glutathione transferase A1-1 catalyzing SNAr reactionsL O Hansson, M Widersten, B MannervikFEBS Letters|February 25, 1985
Inhibitors for distinction of three types of human glutathione transferaseM K Tahir, C Guthenberg, B MannervikThe Biochemical Journal|November 1, 1989
Effects of inducers of drug metabolism on basic hepatic forms of mouse glutathione transferaseP Di Simplicio, H Jensson, B MannervikThe Biochemical Journal|September 1, 1974
A steady-state kinetic model of butyrylcholinesterase from horse plasmaK B Augustinsson, T Bartfai, B MannervikFEBS Letters|July 22, 1985
Selective expression of glutathione transferase isoenzymes in chemically induced preneoplastic rat hepatocyte nodulesH Jensson, L C Eriksson, B MannervikBiochemistry|December 10, 1999
The C-terminal region of human glutathione transferase A1-1 affects the rate of glutathione binding and the ionization of the active-site Tyr9A Gustafsson, M Etahadieh, P Jemth, et al.Protein Expression and Purification|December 22, 1999
Expression and purification of the transcription factor NtcA from the cyanobacterium Anabaena PCC 7120S Wisén, F Jiang, B Bergman, et al.Pageof 22