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Biochemical and Biophysical Research Communications|February 29, 1984
Multiple forms of L1210 dihydrofolate reductase differing in affinity for methotrexateT H Duffy, S B Beckman, F M HuennekensThe Journal of Biological Chemistry|May 25, 1987
L1210 dihydrofolate reductase. Kinetics and mechanism of activation by various agentsT H Duffy, S B Beckman, S M Peterson, et al.Advances in Enzyme Regulation|January 1, 1985
Polymorphism of dihydrofolate reductase from a methotrexate-resistant subline of L1210 cellsT H Duffy, S B Beckman, J K Sato, et al.NCI Monographs : a Publication of the National Cancer Institute|January 1, 1987
Folic acid metabolism and its disruption by pharmacologic agentsF M Huennekens, T H Duffy, K S VitolsAdvances in Enzyme Regulation|January 1, 1985
L1210 dihydrofolate reductase: activation and enhancement of methotrexate sensitivityT H Duffy, J K Sato, K S Vitols, et al.Advances in Enzyme Regulation|January 1, 1994
The methotrexate story: a paradigm for development of cancer chemotherapeutic agentsF M HuennekensAdvances in Enzyme Regulation|January 1, 1997
Development of methotrexate alpha-peptides as prodrugs for activation by enzyme-monoclonal antibody conjugatesF M HuennekensTrends in Biotechnology|June 1, 1994
Tumor targeting: activation of prodrugs by enzyme-monoclonal antibody conjugatesF M HuennekensBiochemistry|September 7, 1976
Interaction of 1,N6-ethenoadenine derivatives of triphosphopyridine and reduced triphosphopyridine nucleotides with dihydrofolate reductase from amethopterin-resistant L1210 cellsV G Neef, F M HuennekensThe Journal of Biological Chemistry|March 10, 1982
Accumulation of 5-methyltetrahydrofolate in cobalamin-deficient L1210 mouse leukemia cellsK Fujii, T Nagasaki, F M HuennekensPageof 5