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Archives of Biochemistry and Biophysics|November 15, 1990
The kinetic mechanisms of the bifunctional enzyme aspartokinase-homoserine dehydrogenase I from Escherichia coliT S Angeles, R E ViolaBiochemical and Biophysical Research Communications|December 15, 1993
Mechanism-based catalytic antibody inactivationT S Angeles, M T MartinAnalytical Biochemistry|February 8, 2000
Quantitative, high-throughput cell-based assays for inhibitors of trkA receptorT S Angeles, J S Lippy, S X YangBiochemistry|November 23, 1993
Use of nitrogen-15 kinetic isotope effects to elucidate details of the chemical mechanism of human immunodeficiency virus 1 proteaseE J Rodriguez, T S Angeles, T D MeekBiochemistry|January 28, 1992
Reversal of enzyme regiospecificity with alternative substrates for aspartokinase I from Escherichia coliT S Angeles, J R Hunsley, R E ViolaMethods in Enzymology|January 1, 1994
Use of steady state kinetic methods to elucidate the kinetic and chemical mechanisms of retroviral proteasesT D Meek, E J Rodriguez, T S AngelesArchives of Biochemistry and Biophysics|February 4, 1998
Kinetics of trkA tyrosine kinase activity and inhibition by K-252aT S Angeles, S X Yang, C Steffler, et al.Biochemistry|October 31, 1989
Aspartokinase-homoserine dehydrogenase I from Escherichia coli: pH and chemical modification studies of the kinase activityT S Angeles, P A Smanik, C L Borders, et al.Biochemistry|December 1, 1992
Solvent isotope partitioning: a new kinetic tool for the determination of desorption rates of reactant water from enzyme-substrate complexes in proteasesT S Angeles, G A Roberts, S A Carr, et al.Analytical Biochemistry|May 1, 1997
A radioactive binding assay for inhibitors of trkA kinaseE Knight, T J Connors, A C Maroney, et al.Pageof 2