Althaus, F.R. and Richter, Ch., “ADP-Ribosylation of Proteins” Enzymology an Biological Significance Table of Contents , pp. XI-XVI, Springer-Verlag, Berlin Heidelberg New York London Paris Tokyo (Exhibit 4). |
Ashamu, Goria, A., “Roles For Adenosine Ribose Hydroxl Groups In Cyclic In Cyclic Adenosin 5′-Diphosphate Ribose-Mediated Ca2 + Release†” Biochemistry (1997) vol. 36: No. 31:9509-9517 (Exhibit 5). |
Funaro, Ada, et al., “Involvement Of The Multilneage CD38 Molecule In a Unique Pathway Of Cell Activation And Proliferation”The Journal of Immunology(Oct. 15, 1990) vol. 145: No. 8, pp. 2390-2396 ( Exhibit 6). |
Galione, Antony and White, Alison, “Ca2+ Release Induced By Cyclic ADP-Ribose”Trends in Cell Biology(Dec. 4, 1994) vol. 4 pp. 431-436 (Exhibit 7). |
Gilman, Alfred, G., “G Proteins And Dual Control Of Adenylate Cyclase” Cell ( Mar. 1984) vol. 36:577-579 (Exhibit 8). |
Glick, David, L., “Primary Structure Of A Molluscan Egg-Specific NADase, A Second-Messenger Enzyme” Cell Regulaltion(Mar. 1991) vol. 2:211-218 (Exhibit 9). |
Harrap, K.R. and Renshaw, J., “Intracellular Nucleotide Pools And Their Significance In Antimetabolite Therapy” Antibiotics Chemother(1980) vol. 28:68-77 (Exhibit 10). |
Hellmich, Mark, R. and Strumwasser, Felix, “Purification And Characterization Of A Molluscan Egg-Specific NADase, A Second-Messenger Enzyme” Cell Regulation(Mar. 1991) vol. 2:193-202 (Exhibit 11). |
Hemmi, Hiromichi and Breitman, Theodore, R., “Induction By Retinic Acid Of NAD+-Glychydrolase Activity Of Myelomoncytic Cell Lines HL-60, THP-1 And U-937, And Fresh Human Acute Promyelocytic Cells In primary Culture” Biochemical And Biophysical Research Communications(Dec. 15, 1982) vol. 109, No. 3, pp. 669-674 (Exhibit 12). |
Horsman, Michael, R., “Nicotinamide And Other Benzamide Analogs As Agents For Overcoming Hypoxic Cell Radiation Resistance In Tumors”Acta Oncologica(1995) vol. 34, No. 5, pp. 571-587 (Exhibit 13). |
Howard, Maureen, et al., “Formation And Hydrolysis Of Cyclic ADP-Ribose Catalyzed By Lymphocyte Antigen CD38” Science(Nov. 12, 1993) vol. 262:1056-1059 (Exhibit 14). |
Hua, Jianyi, et al., “Acidic And Neutralized Metoclopramide Formulations Sensitize Ionizing Radiation Induced Cytotoxicity In A Human Lung Adenocarcinoma Xenografted To Scid Mice” Anti-Cancer Drugs(1995) vol. 6:451-455 (Exhibit 15). |
Kaufmann, Scott, H., “Specific Proteolytic Cleavage Of Poly (ADP-ribose) Polmerase: An Early Marker Of Chemotherapy-Induced Apoptosis” Cancer Research(Sep. 1, 1993). vol. 53:3976-3985 (Exhibit 16). |
Kim, Hyuntae, et al., “Synthesis And Degradation Of Cyclic ADP-Ribose By NAD Glycohydrolases” Science(Sep. 3, 1993) vol. 261:1330-1333 (Exhibit 17). |
Kontani, Kenji, et al., “NAD Glycohydrolase Specifically Induced By Retinoic Acid In Human Leukemic HL-60 Cells” The Journal of Biological Chemistry(1993) vol. 268, No. 23, pp. 16895-16898 (Exhibit 18). |
Kumagai, Masa-aki, et al., “Ligation Of CD38 Suppresses Human B Lymphopoiesis” J. Exp. Med.(Mar. 1995) vol. 181:1101-1110 (Exhibit 19). |
Lee, Herbert and Iglewski, Wallace, J., “Cellular ADP-Ribosyltransferase With The Same Mechaniam Of Action As Diphtheria Toxin And Pseudomanas Toxin A” Proc. Natl. Acad. Sci. USA(May 1984) vol. 81:2703-2707 (Exhibit 20). |
Lee, Hon Cheung and Aarhus Robert, “ADP-Ribosyl Cyclase: An Enzyme That Cyclizes NAD+ Into A Calcium-Mobilizing Metabolite” Cell Regulation(Mar. 1991) vol. 2:203-209 (Exhibit 21). |
Lee, H.C., et al., “Cyclic ADP-Ribose And Its Metabolic Enzymes” Biochimie(1995) vol. 77:345-355 (Exhibit 22). |
Lee, Hon Cheung, et al., “Structural Determination Of a Cyclic Metabolite Of NAD+ With Intracellular Ca2+-Mobilizing Activity” The Journal of Biological Chemistry(1989) vol. 264, No. 3, pp. 1608-1615 (Exhibit 23). |
Lindahl, Tomas, et al., “Post-Translational Modification Of Poly (ADP-Ribose) Polymerase Induced By DNA Strand Breaks” Reviews(Oct. 1995) pp. 405-411 (Exhibit 24). |
Lund, Frances, et al., “Murine CD38: An Immunoregulatory Ectoenzyne” Immunology Today(1995) vol. 16, No. 16, pp. 469-473 (Exhibit 25). |
McGahon, Anne et al., “BCR-ABL Maintains Resistance Of Chronic Myelogenous Leukemia Cells To Apoptotic Cell Death” Blood(Mar. 1, 1994) vol. 83, No. 5, pp. 1179-1187 (Exhibit 26). |
Okamoto, H., et al., “New Aspects Of The Physiological Significance Of NAD, Poly ADP-Ribose And Cyclic ADP-Ribose” Biochimie(1995) vol. 77;356-363 (Exhibit 27). |
Olsson, Anders, et al., “Specific Binding And Uptake Of Extracellular Nicotinamide In Human Leukemic K-562 Cells” Biochemical Pharmacology(1993) vol. 45, No. 6, pp. 1191-1200 (Exhibit 28). |
Pero, Ronald , W., et al., “Multiple Mechanisms Of Action Of The Benzamides And Nicotinamides As Sensitizers Of Radiotherapy: Opportunities For Drug Design” Cancer Detection and Prevention(1998) vol. 22(3);225-236 (Exhibit 29). |
Pero, Ronald, W., et al., “Active Transport Of Nicotinamide And The Adenine Moiety Of NAD By Metabolically Controled NAD Catabolism” Division of Biochemical Epidemiology, Prevention Medicine Institute of the Strang Clinicpp. 378-385 (Exhibit 30). |
Rusinko, Nancy, and Lee, Hon Cheung, “Widespread Occurrence In Animal Tissues Of An Enzyme Catalyzing The Conversion Of NAD + Into A Cyclic Metabolite With Intracellular Ca2+-Mobilizing Activity” The Journal of Biological Chemistry(1989) vol. 264, No. 20, pp. 11725-11731 (Exhibit 31). |
Satoh, Masahiko, S., et al., “Dual Function For Poly(ADP-Ribose) Synthesis In Response To DNA Strand Breakage” Biochemistry(1994) vol. 33:7099-7106 (Exhibit 32). |
Schweitzer, C.M., et al., “Spectrophotometric Determination Of Clonogenic Capacity Of Leukemic Cells In A Semisolid Microtiter Culture System” Experimental Hematology(1993) vol. 21:573-578 (Exhibit 33); and Vindeløv, Lars, L., “Flow Microfluorometric Analysis Of Nuclear DNA In Cells From Solid Tumors And Cell Suspensions” Virchows Arch. B Cell Path.(1977) vol. 24:227-242. (Exhibit 34). |