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Surgical Oncology Clinics of North America|April 1, 1995
Genetic alterations in prostate adenocarcinomaN J Prendergast, P J WaltherBiochemistry|May 17, 1988
Expression and site-directed mutagenesis of human dihydrofolate reductaseN J Prendergast, T J Delcamp, P L Smith, et al.Biochemistry|June 28, 1988
Ligand-induced structural constraints in human dihydrofolate reductase revealed by peptide-specific antibodiesM Ratnam, X H Tan, N J Prendergast, et al.Biochemistry|May 30, 1989
Effects of conversion of phenylalanine-31 to leucine on the function of human dihydrofolate reductaseN J Prendergast, J R Appleman, T J Delcamp, et al.The Journal of Urology|May 1, 1996
p53 immunohistochemical and genetic alterations are associated at high incidence with post-irradiated locally persistent prostate carcinomaN J Prendergast, M R Atkins, E C Schatte, et al.Biochemistry|October 9, 1990
Crystal structures of recombinant human dihydrofolate reductase complexed with folate and 5-deazafolateJ F Davies, T J Delcamp, N J Prendergast, et al.Biochemistry|January 24, 1989
Effects of conversion of an invariant tryptophan residue to phenylalanine on the function of human dihydrofolate reductaseS M Huang, T J Delcamp, X H Tan, et al.The Journal of Biological Chemistry|February 15, 1990
Unusual transient- and steady-state kinetic behavior is predicted by the kinetic scheme operational for recombinant human dihydrofolate reductaseJ R Appleman, W A Beard, T J Delcamp, et al.The Journal of Biological Chemistry|February 15, 1989
Atypical transient state kinetics of recombinant human dihydrofolate reductase produced by hysteretic behavior. Comparison with dihydrofolate reductases from other sourcesJ R Appleman, W A Beard, T J Delcamp, et al.Biochemistry|July 10, 1990
Kinetic investigation of the functional role of phenylalanine-31 of recombinant human dihydrofolate reductaseJ T Tsay, J R Appleman, W A Beard, et al.Pageof 1