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Trends in Biotechnology|September 1, 1990
Site directed mutagenesis: a tool for enzyme mechanism dissectionC R Wagner, S J BenkovicBiochemistry|November 20, 1984
Stereochemical course of the 3'----5'-exonuclease activity of DNA polymerase IA P Gupta, S J BenkovicBiochemistry|July 16, 1996
Role of adenosine 5'-triphosphate hydrolysis in the assembly of the bacteriophage T4 DNA replication holoenzyme complexA J Berdis, S J BenkovicBiochemistry|May 11, 1982
On the mechanism of de novo polymerization by form I polynucleotide phosphorylase of Micrococcus luteusJ F Marlier, S J BenkovicChemistry & Biology|May 14, 1998
Stretching exercises--flexibility in dihydrofolate reductase catalysisG P Miller, S J BenkovicBiochemistry|June 13, 1998
Strength of an interloop hydrogen bond determines the kinetic pathway in catalysis by Escherichia coli dihydrofolate reductaseG P Miller, S J BenkovicBiochemistry|January 31, 1998
Evidence for a functional role of the dynamics of glycine-121 of Escherichia coli dihydrofolate reductase obtained from kinetic analysis of a site-directed mutantC E Cameron, S J BenkovicBiochemistry|December 12, 1989
Resonance energy transfer measurements between substrate binding sites within the large (Klenow) fragment of Escherichia coli DNA polymerase ID J Allen, S J BenkovicMolecular Pharmacology|March 1, 1984
Inhibition of HKSV28 cell growth by 5,11-methenyl-tetrahydrohomofolateL J Slieker, S J BenkovicBiochemistry|March 11, 1997
Mechanism of bacteriophage T4 DNA holoenzyme assembly: the 44/62 protein acts as a molecular motorA J Berdis, S J BenkovicPageof 42