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Biochemistry|August 6, 1999
Fast product formation and slow product release are important features in a hysteretic reaction mechanism of glutathione transferase T2-2P Jemth, B MannervikBiochimica Et Biophysica Acta|February 4, 1982
Essential arginine residues in the pyridine nucleotide binding sites of glutathione reductaseV Boggaram, B MannervikThe Biochemical Journal|September 1, 1975
Reduction of disulphide bonds in proteins mixed disulphides catalysed by a thioltransferase in rat liver cytosolB Mannervik, K AxelssonProtein Engineering|September 1, 1992
A structural role of histidine 15 in human glutathione transferase M1-1, an amino acid residue conserved in class Mu enzymesM Widersten, B MannervikMolecular Pharmacology|February 1, 1990
Inactivation of the genotoxic aldehyde acrolein by human glutathione transferases of classes alpha, mu, and piK Berhane, B MannervikAnalytical Biochemistry|February 23, 2000
Kinetic analysis of the interaction between HIV-1 protease and inhibitors using optical biosensor technologyP O Markgren, M Hämäläinen, U H DanielsonBiochimica Et Biophysica Acta|June 13, 1980
General specificity of cytoplasmic thioltransferase (thiol:disulfide oxidoreductase) from rat liver for thiol and disulfide substratesK Axelsson, B MannervikThe Journal of Biological Chemistry|July 25, 1983
Reversal of the reaction catalyzed by glyoxalase I. Calculation of the equilibrium constant for the enzymatic reactionS Sellin, B MannervikBiochemical and Biophysical Research Communications|February 13, 2001
A highly acidic tyrosine 9 and a normally titrating tyrosine 212 contribute to the catalytic mechanism of human glutathione transferase A4-4I Hubatsch, B MannervikJournal of Molecular Biology|July 7, 1995
Glutathione transferases with novel active sites isolated by phage display from a library of random mutantsM Widersten, B MannervikPageof 22