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Biochemistry|June 13, 1998
Deletion of a highly motional residue affects formation of the Michaelis complex for Escherichia coli dihydrofolate reductaseG P Miller, S J BenkovicCurrent Opinion in Biotechnology|August 1, 1997
The state of antibody catalysisD B Smithrud, S J BenkovicBiochemistry|October 8, 1985
Mechanism of "uncoupled" tetrahydropterin oxidation by phenylalanine hydroxylaseT A Dix, S J BenkovicNucleic Acids Research|August 25, 1987
Synthesis and application of derivatizable oligonucleotidesK J Gibson, S J BenkovicBiochemistry|January 24, 1989
Probing the functional role of threonine-113 of Escherichia coli dihydrofolate reductase for its effect on turnover efficiency, catalysis, and bindingC A Fierke, S J BenkovicProtein Engineering|June 2, 2000
Improvement in the efficiency of formyl transfer of a GAR transformylase hybrid enzymeA E Nixon, S J BenkovicBiochemistry|January 23, 1996
Dual role of the 44/62 protein as a matchmaker protein and DNA polymerase chaperone during assembly of the bacteriophage T4 holoenzyme complexB F Kaboord, S J BenkovicBiochemistry|August 6, 1999
Catalytic mechanism of Escherichia coli glycinamide ribonucleotide transformylase probed by site-directed mutagenesis and pH-dependent studiesJ H Shim, S J BenkovicProtein Engineering|January 1, 1997
Combinatorial manipulation of three key active site residues in glycinamide ribonucleotide transformylaseM S Warren, S J BenkovicNature|June 1, 1995
Transition-state stabilization as a measure of the efficiency of antibody catalysisJ D Stewart, S J BenkovicPageof 30