C. Fenselau and P. B. W. Smith, High-Performance tandem mass spectrometry in metabolism studies, Xenobiotica, vol. 22, No. 9/10, Sep. 1992-Oct. 1992, pp. 1207-1219. |
M. H. Lyttle et al., Glutathione-S-Transferase Activates Novel Alkylating Agents Journal of Medical Chemistry, vol. 37, No. 10, 13 May 1994, pp. 1501-1507. |
Jane E. Sharer et al., Formation, stability, and rearrangements of the glutathione conjugates of butadiene monoxide; evidence for the formation of stable surfurane intermediates, Chem. Res. Toxicol. (1991), 4(4), 430-6 CODEN: CRTOEC; ISSN:0893-228X, 1991, pp. 434-435. |
Mannervik, B., et al., Identification of Three Classes of Cytosolic Glutathione Transferase Common to Several Mammalian Species: Correlation Between Structural Data and Enzymatic Properties; Proc Natl Acad Sci (1985) 82:7202-7206. |
Smith, M. T., et al., Denitrosation of 1,3-Bis(2-chloroethyl)-nitrosourea by Class Mu Glutathione Transferases and Its Role in Cellular Resistance in Rat Brain Tumor Cells; Cancer Res (1989) 49:2621-2625. |
Castro et al., Differences Among Human Tumor Cell Lines in the Expression of Glutathione Transferases and Other Glutathione-linked Enzymes; Carcinogenesis (1990) 11:1569-1596. |
Wience, J. K. et al., Human Glutathione S-Transferase Deficiency as a Marker of Susceptibility to Epoxide-Induced Cytogenetic Damage; Cancer Res (1990) 50:1585-1590. |
Ketterer, B. et al., "Glutathione Conjugation: Mechanisms and Biological Significance" Sies, H., et al. eds. (1988) Academic Press, London, pp. 74-137. |
Schisselbauer, J. C., et al., Characterization of Glutathione S-Transferase Expression in Lymphocytes from Chronic Lymphocytic Leukemia Patients; Cancer Res (1990) 50:3562-3568. |
Puchalski, R. B., et al., Expression of Recombinant Glutathione S-Transferase .pi., Ya, or Yb.sub.1 Confers Resistance to Alkylating Agents; Proc Natl Acad Sci USA (1990) 87:2443-2447. |
Borch et al., Synthesis and Antitumor Properties of Activated Cyclophosphamide Analogues; J Med Chem (1991) 34:3044-3052. |
Borch et al., Synthesis, Activation and Cytotoxicity of Aldophosphamide Analogues; J Med Chem (1991) 34:3052-3058. |
Borch et al., In Situ Preparation and Fate of cis-4-Hydroxycyclophosphamide and Aldophosphamide; .sup.1 H and .sup.31 P NMR Evidence for Equilibration of cis- and trans-4-Hydroxycyclophosphamide with Aldophosphamide and Its Hydrate in Aqueous Solution; J Med Chem (1984) 27:490-494. |
Borch et al., The Mechanism of Activation of 4-Hydroxycyclophosphamide; J Med Chem (1987) 30:427-431. |
Adang, A. E. P. et al., The Glutathione-Binding Site in Glutathione S-Tranferase, Biochem J. (1990) 269:47-54. |
Principato, G. B., et al., Effects of Some S-Blocked Glutathione Derivatives on the Prevalent Glyoxalase II (a form) of Rat Liver, Enzyme (1989) 41:175-180. |
Morris, D., Synthesis of the a-and y-Isomers of Glutamylcystinylvaline, Biochem J. (1960) 76:349-353. |
Waxman, D. J., Glutathione S-Transferase: Role in Alkylating Agent Resistance and Possible Target for Modulation Chemotherapy--A Review; Cancer Res (1990) 50:6449-6454. |
Mannervik, B. et al., CRC Crit Rev Biochemistry (1988) 23:283-355. |
Reieneman, P., et al., Three-dimensional Structure of Class .pi. Glutathione S-Transferase from Human Placenta in Complex with S-Hexylglutathione at 2.8 .ANG. Resolution; J Mol Biol (1992) 213:214-226. |