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Chemical Research in Toxicology|April 17, 1998
A mitomycin-N6-deoxyadenosine adduct isolated from DNAY Palom, R Lipman, S M Musser, et al.Chemical Research in Toxicology|June 20, 2000
Structure of adduct X, the last unknown of the six major DNA adducts of mitomycin C formed in EMT6 mouse mammary tumor cellsY Palom, M F Belcourt, S M Musser, et al.Pharmacology & Therapeutics|April 16, 1998
The mitomycin bioreductive antitumor agents: cross-linking and alkylation of DNA as the molecular basis of their activityM Tomasz, Y PalomBiochemistry|August 18, 1981
Reductive metabolism and alkylating activity of mitomycin C induced by rat liver microsomesM Tomasz, R LipmanBiochimica Et Biophysica Acta|December 21, 1978
Electrostatic complexes of mitomycin C with nucleic acids and polyanionsR Lipman, J Weaver, M TomaszJournal of Medicinal Chemistry|August 10, 2001
Selective activation of mitomycin A by thiols to form DNA cross-links and monoadducts: biochemical basis for the modulation of mitomycin cytotoxicity by the quinone redox potentialM M Paz, A Das, Y Palom, et al.Biochemistry|February 11, 1992
Recognition of specific DNA sequences by mitomycin C for alkylationS Kumar, R Lipman, M TomaszBiochemistry|March 27, 1990
Recognition between mitomycin C and specific DNA sequences for cross-link formationH Borowy-Borowski, R Lipman, M TomaszBiochemistry|May 3, 1988
Mechanism of monofunctional and bifunctional alkylation of DNA by mitomycin CM Tomasz, A K Chawla, R LipmanBiochemistry|July 29, 1986
Reassignment of the guanine-binding mode of reduced mitomycin CM Tomasz, R Lipman, G L Verdine, et al.Pageof 10