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Proceedings of the National Academy of Sciences of the United States of America|November 12, 1996
The carboxyl terminus of the bacteriophage T4 DNA polymerase is required for holoenzyme complex formationA J Berdis, P Soumillion, S J BenkovicBiochemistry|May 29, 1990
The kinetic mechanism of wild-type and mutant mouse dihydrofolate reductasesJ Thillet, J A Adams, S J BenkovicBiochemistry|March 8, 1994
Cloning and characterization of a new purine biosynthetic enzyme: a non-folate glycinamide ribonucleotide transformylase from E. coliA Marolewski, J M Smith, S J BenkovicBioorganic & Medicinal Chemistry|December 1, 1999
Incremental truncation as a strategy in the engineering of novel biocatalystsM Ostermeier, A E Nixon, S J BenkovicBiochemistry|September 14, 2000
Human AICAR transformylase: role of the 4-carboxamide of AICAR in binding and catalysisM Wall, J H Shim, S J BenkovicBiochemistry|September 6, 1988
Kinetic mechanism whereby DNA polymerase I (Klenow) replicates DNA with high fidelityR D Kuchta, P Benkovic, S J BenkovicBiochemistry|March 4, 1998
Clamp subunit dissociation dictates bacteriophage T4 DNA polymerase holoenzyme disassemblyP Soumillion, D J Sexton, S J BenkovicTrends in Biotechnology|July 4, 1998
Hybrid enzymes: manipulating enzyme designA E Nixon, M Ostermeier, S J BenkovicAnnual Review of Biochemistry|June 8, 2001
Replisome-mediated DNA replicationS J Benkovic, A M Valentine, F SalinasActa Crystallographica. Section C, Crystal Structure Communications|August 15, 1988
Structure of 6-(iodomethyl)-2-oxo-2-phenoxy-1,2-oxaphosphorinaneM Parvez, A D Napper, S J BenkovicPageof 30