Atkins et al., “Purification and properties of inosine monophosphate oxidoreductase from nitrogen-fixing nodules of cowpea (Vigna unguiculata L. Walp),” Arch. Biochem. Biophys., 236(2):807-814, 1985. |
Boyum, “A one-stage procedure for isolation of granulocytes and lymphocytes from human blood: general sedimentation properties of white blood cells in a 1 g gravity field,” Scand. J. Clin. Lab. Invet., 21(97):51-55, 1968. |
Caplan et al., “Introduction of genetic material into plant cells,” Science, 222:815-821, 1983. |
Chirgwin et al., “Isolation of biologically active ribonucleic acid from sources enriched in ribonuclease,” Biochem., 18(24):5294-5299, 1979. |
Cohen and Sadee, “Contributions of the depletions of guanine and adenine nucleotides to the toxicity of purine starvation in the mouse T lymphoma cell line,” Cancer Res., 43:1587-1591, 1983. |
Cohen et al., “Guanine nucleotide depletion and toxicity in mouse T lymphoma (S-49) cells,” J. Biol. Chem., 256(16):8713-8717, 1981. |
Cohen, “Selection and characterization of mycophenolic acid-resistant leukemia cells,” Som. Cell Mol. Genet., 13(6):627-633, 1987. |
Collart and Huberman, “Amplification of the IMP dehydrogenase gene in Chinese hamster cells resistant to mycophenolic acid,” Mol. Cell. Biol., 7(9):3328-3331, 1987. |
Collart and Huberman, “Cloning and sequence analysis of the human and Chinese hamster inosine-5′-monophosphate dehydrogenase cDNAs,” J. Biol. Chem., 263(30):15769-15772, 1988. |
Cooney et al., “A straightforward radiometric technique for measuring IMP dehydrogenase,” Anal. Biochem., 130:339-345, 1983. |
Davis et al., “Calcium phosphate transfection of nonadherent and adherent cells with purified plasmids,” In: Basic Methods in Molecular Biology, Section 18-1, pp. 286-289, 1986. |
Devereux et al., “A comprehensive set of sequence analysis programs for the VAX,” Nucl. Acids Res., 12(1):387-395, 1984. |
Duan and Sadée, “Distinct effects of adenine and guanine starvation on DNA synthesis associated with different pool sizes of nucleotide precursors,” Cancer Res., 47:4047-4051, 1987. |
Elliott et al., “Differential expression of three α-tubulin genes in Chinese hamster ovary cells,” Mol. Cell. Biol., 5(1):236-241, 1985. |
Feinberg and Vogelstein, “A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity,” Anal. Biochem., 132:6-13, 1983. |
Franklin and Cook, “The inhibition of nucleic acid synthesis by mycophenolic acid,” Biochem. J., 113:515-524, 1969. |
Gilbert and Drabble, “Active-site modification of native and mutant forms of inosine-5′-monophosphate dehydrogenase from Escherichia coli K12,” Biochem. J., 191(2):533-541, 1980. |
Gilbert et al., “Inosine 5′-monophosphate dehydrogenase of Escherichia coli,” Biochem. J., 183:481-494, 1979. |
Heath et al., “Flavor potentiators,” In: Flavor Chemistry and Technology, AVI Publishing Co., Inc., Westport, CT, Ch. 9, pp. 318-331, 1986. |
Huberman et al., “Mutagen-induced resistance to mycophenolic acid in hamster cells can be associated with increased inosine 5′-phosphate dehydrogenase activity,” Proc. Natl. Acad. Sci. USA, 78(5):3151-3154, 1981. |
Hupe et al., “IMP dehydrogenase from the intracellular parasitic protozoan Eimeria tenella and its inhibition by mycophenolic acid,” J. Biol. Chem., 261(18):8363-8369, 1986. |
Huynh et al., “Constructing and screening cDNA libraries in λgt10 and λgt11,” In: DNA Cloning: A Practical Approach, IRL Press, Oxford; Washington D.C., Glover, ed., Chapter 2,vol. 1:49-78, 1985. |
Ikegami et al., “Direct assay method for inosine 5′-monophosphate dehydrogenase activity,” J. Biochem., 150:155-160, 1985. |
Ikegami et al., “Purificaiton of IMP dehydrogenase from rat hepatoma 3924A,” Life Sci., 40(23):2277-2282, 1987. |
Itakura et al., “Synthesis and use of synthetic oligonucleotides,” Ann. Rev. Biochem., 53:323-356, 1984. |
Jackson et al., “Partial purification, properties and regulation of inosine 5′-phosphate dehydrogenase in normal and malignant rat tissues,” Biochem. J., 166:1-10, 1977. |
Jackson and Weber, “IMP dehydrogenase, an enzyme linked with proliferation and malignancy,” Nature, 256:331-333, 1975. |
Joye et al., Nucleic Acids Research, 11(8):2325-2335, 1983. |
Kittler et al., “A general immunochemical method for detecting proteins on blots,” Anal. Biochem., 137:210-216, 1984. |
Klock and Bainton, “Degranulation and abnormal bactericidal function of granulocytes procured by reversible adhesion to nylon wool,” Blood, 48(1):149-161, 1976. |
Kozak, “Compilation and analysis of sequences upstream from the translational start site in eukaryotic mRNAs,” Nucl. Acids Res., 12(2):857-872, 1984. |
Krishnaiah, “Inosinic acid 5′-monophosphate dehydrogenase of Escherichia coli: purification by affinity chromatography and some properties,” Arch. Biochem. Biophys., 170:567-575, 1975. |
Laemmli, “Cleavage of structural proteins during the assembly of the head of bacteriophage T4,” Nature, 227:680-685, 1970. |
Maclean et al., “Introduction of novel genes into fish,” Biotech., 5:257-261, 1987. |
Maniatis et al., In: Molecular cloning: a laboratory manual, Cold Spring Harbor Laboratory, NY, pp. 315-321, 1982. |
Messing, “New vectors for cloning genes,” Meth. Enzymol., 101(2):20-78, 1983. |
Miyagawa et al., “Cloning of the Bacillus Subtilis IMP dehydrogenase gene and its application to increased production of guanosine,” Biotech., 4:225-228, 1986. |
Natsumeda et al., “Two distinct cDNAs for human IMP dehydrogenase,” J. Biol. Chem., 265(9);5292-5295, 1990. |
Newman et al., “Activity of inosine monophosphate dehydrogenase inhibitors against human immunodeficiency virus,” Proc. Am. Assoc. Cancer Res. Meet., 28(0):323, 1987. |
Nowack and Shaw, “Mycophenolic Acid Binding to Human Serum Albumin: Characterization and Relation to Pharmacodynamics,” Clin. Chem., 41(7):1011-1017, 1995. |
Okado et al., “IMP dehydrogenase. II. Purification and properties of the enzyme from Yoshida sarcoma ascites tumor cells,” J. Biochem., 94:1605-1613, 1983. |
Okayama and Berg, “A cDNA cloning vector that permits expression of cDNA inserts in mammalian cells,” Mol Cell Biol., 3(2):280-289, 1983. |
Okayama and Berg, “High-efficiency cloning of full-length cDNA,” Mol. Cell. Biol., 2(2):161-170, 1982. |
Old et al., “Cloning in Bacteria other than E. coli,” In: Principles of Gene Manipulation: An Introduction to Genetic Engineering, Blackwell Scientific Publishers, 3rd ed., Chapter 8, pp. 10-13, 127-202, 288-293, 1985. |
Palmiter et al., “Metallothionein-human GH fusion genes stimulate growth of mice,” Science, 222:809-814, 1983. |
Sambrook et al. “Using antibodies in immunological screening,” In: Molecular cloning: a laboratory manual —2nd ed., Cold Spring Harbor Laboratory Press, 12.11-12.15, 1989. |
Sanger et al., “DNA sequencing with chain-terminating inhibitors,” Proc. Natl. Acad. Sci. USA, 74(12):5463-5467, 1977. |
Schulz et al., “Optimizing the expression in E. coli of a synthetic gene encoding somatomedin-C(IGF-I),” Mol. Biol. Chem., 13(6):1923-1939, 1985. |
Sinkar et al., “ro1A locus of the Ri plasmid directs developmental abnormalities in transgenic tobacco plants,” Genes Devel., 2:688-697, 1988. |
Tiedeman and Smith, “Isolation and sequence of a cDNA encoding mouse IMP dehydrogenase,” Gene, 97:289-293, 1991. |
Tiedeman and Smith, “Nucleotide sequence of the guaB locus encoding IMP dehydrogenase of Escherichia coli K12,” Nucleic Acids Res., 13(4):1303-1316, 1985. |
Towbin et al., “Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications,” Proc. Natl. Acad. Sci. USA, 76(9):4350-4354, 1979. |
Tricot et al., “Hematological and biochemical action of tiazofurin (NSC 286193) in a case of refractory acute myeloid leukemia,” Cancer Res., 47:4988-4991, 1987. |
Ullman, “Characterization of mutant murine lymphoma cells with altered inosinate dehydrogenase activities,” J. Biol. Chem., 258(1):523-5238, 1983. |
Vaitukaitus, “Production of antisera with small doses of immunogen: multiple intradermal injections,” Meth. Enzymol., 73(Pt B):46-52, 1981. |
Weber, “Biochemical strategy of cancer cells and the design of chemotherapy: G.H.A. Clowes Memorial Lecture,” Cancer Res., 43:3466-3492, 1983. |
Weber et al., “Biochemical commitment to replication in cancer cells,” Adv. Enzyme Regul., 18:3-26, 1980. |
Yamada et al., “Action of the active metabolites of tiazofurin and ribavirin on purified IMP dehydrogenase,” Biochem., 27:2193-2196, 1988. |
Zassenhaus et al., “Rapid electroelution of nucleic acids from agarose and acrylamide gels,” Anal. Biochem., 125:125-130, 1982. |
Goding, “Monoclonal antibodies: principals and practice,” 1983. |
Holmes et al., Biochimica et Biophysica Acta, 364:209-217, 1974. |
Anderson and Sartorelli, J. Biolog. Chem., 213(18):1762-1768, 1968. |