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Biochemistry|August 5, 1997
Reductive half-reaction of thioredoxin reductase from Escherichia coliB W Lennon, C H WilliamsBiochemistry|December 17, 1985
Reaction of both active site thiols of reduced thioredoxin reductase with N-ethylmaleimideM E O'Donnell, C H WilliamsThe Journal of Biological Chemistry|July 10, 1976
Measurement of the oxidation-reduction potentials for two-electron and four-electron reduction of lipoamide dehydrogenase from pig heartR G Matthews, C H WilliamsThe Journal of Biological Chemistry|June 4, 1975
The sequence of amino acid residues around the oxidation-reduction active disulfide in yeast glutathione reductaseE T Jones, C H WilliamsThe Journal of Biological Chemistry|February 25, 1984
Reconstitution of Escherichia coli thioredoxin reductase with 1-deazaFAD. Evidence for 1-deazaFAD C-4a adduct formation linked to the ionization of an active site baseM E O'Donnell, C H WilliamsThe Journal of Biological Chemistry|November 25, 1983
Proton stoichiometry in the reduction of the FAD and disulfide of Escherichia coli thioredoxin reductase. Evidence for a base at the active siteM E O'Donnell, C H WilliamsBiochemistry|March 21, 1995
Effect of pyridine nucleotide on the oxidative half-reaction of Escherichia coli thioredoxin reductaseB W Lennon, C H WilliamsThe Journal of Biological Chemistry|December 25, 1992
Oxidation-reduction properties of Escherichia coli thioredoxin reductase altered at each active site cysteine residueA J Prongay, C H WilliamsJournal of Neurochemistry|January 9, 2001
Phosphorylation of thr(668) in the cytoplasmic domain of the Alzheimer's disease amyloid precursor protein by stress-activated protein kinase 1b (Jun N-terminal kinase-3)C L Standen, J Brownlees, A J Grierson, et al.The European Journal of Neuroscience|February 13, 2001
p35/cdk5 binds and phosphorylates beta-catenin and regulates beta-catenin/presenilin-1 interactionS Kesavapany, K F Lau, D M McLoughlin, et al.Pageof 16