Gagliardini et al., “Prevention of Vertebrate Neuronal Death by the crmA Gene,” Science, vol. 263, pp,. 826-828, 1994. |
Howard et al., “IL-1-Converting Enzyme Requires Aspartic Acid Residues for Processing of the IL-1-beta Precursor at two Distinct Site and Does Not Cleave 31-kDa IL-1-alpha,” J. Immunology, vol. 147, pp. 2964-2969, 1991. |
Jones, “Amino Acid and Peptide Synthesis,” Seven G. Davis, ed., Oxford University Press, Oxford, pp. 25-41, 1992. |
Lonnemann et al., “Differences in the Synthesis and Kinetics of Release of Interleukin 1alpha, interleukin 1 beta and tumor necrosis factor from human mononuclear cells,” Eur. J. Immunol., vol. 19, 1531-1536, 1989. |
Marx, J., “Cell Death Studies Yield Cancer Clues,” Science, vol. 259, pp. 760-762, 1993. |
Miura, M. et al., “Induction of Apoptosis in Fibroblasts by IL-1beta-Converting Enzyme, a Mammalian Homolog for the C. elegans Cell Death Gene ced-3,” Cell, vol. 75, pp. 653-660, 1993. |
Mosley et al., “Determination of the minimun polypeptide lengths of the functionally active sites of human interleukins 1-alpha and 1-beta,” Proc. Nat. Acad. Sci., vol. 84, pp. 4572-4576, 1987. |
Nett-Fiordalisi et al., “Macrophage Apoptosis in the Absence of Active Interleukin-1 Beta-Converting Enzyme,” Journal of Leukocyte Biology, vol. 58, pp. 717-724, 1995. |
Nicholson et al., “Identification and Inhibition of the ICE/CED-3 Protease necessary for Mammalian Apoptosis,” Nature, vol. 376, pp. 37-43, 1995. |
Oppenheim et al., “There is more than one Interleukin 1,” Immunology Today, vol. 7, pp. 45-56, 1986. |
Plattner, JJ. et al., Drug Discovery Technologies, C.R. Clark and W.H. Moos, Eds. (Ellis Horwood, Chichester, England), pp. 92-126, 1990. |
Sleath et al., “Substrate Specificity of the Protease That Processes Human Interleukin-1beta,” J. Biol. Chem., vol. 265, pp. 14526-14528, 1992. |
Thornberry et al., “A Novel Heterodimeric Cysteine Protease is Required for Interleukin-1 beta Processing in Monocytes,” Nature, vol. 356, pp. 768-774, 1992. |
Yuan et al., “The C. elegans Cell Death ced-3 Encodes a Protein Similar to Mammalian Interleukin-1beta-Converting Enzyme,” Cell, vol. 75, pp. 641-652, 1993. |
Bodanzky, M., “Peptide Chemistry, A Practical Textbook,” 2nd rev. ed., Springer-Verlag, Berlin Heidelberg, 55-73 and 129-180 (1993). |
Bodanzky, M., “Principles of Peptide Synthesis,” Hafner et al., Eds., Springer-Verlag, Berlin Heidelberg, pp. 9-52 and pp. 202-251 (1984). |
Jones, “Amino Acid and Peptide Synthesis,” Steven G. Davis ed., Oxford University Press, Oxford, pp. 25-41 (1992). |
Lonnemann, et al., “Differences in the Synthesis and Kinetics of Release of Interleukin 1α, interleukin 1β and tumor necrosis factor from human mononuclear cells”, Eur. J. Immunol., 19:1531-1536 (1989). |
Marx, J., “Cell Death Studies Yield Cancer Clues”, Science, 259:760-762 (1993). |
Miura, M. et al., “Induction of Apoptosis in Fibroblasts by IL-1β-Converting Enzyme, a Mammalian Homolog for the C. elegans Cell Death Gene ced-3”, Cell, 75:653-660 (1993). |
Mosely, et al., “Determination of the minimum polypeptide lengths of the functionally active sites of human interleukins 1α and 1β”, Proc. Nat. Acad. Sci., 84:4572-4576 (1987). |
Nett-Fiordalisi, et al., “Macrophage Apoptosis in the Absence of Active Interleukin-1β-Converting Enzyme”, Journal of Leukocyte Biology, 58:717-724 (1995). |
Oppenheim, et al., “There is more than one Interleukin 1”, Immunology Today, 7:45-56 (1986). |
Plattner, J.J. and D.W. Norbeck, in Drug Discovery Technologies, C.R. Clark and W.H. Moos, Eds. (Ellis Horwood, Chichester, England, 1990), pp. 92-126. |
Yuan et al., “The C. elegans Cell Death Gene ced-3 Encodes a Protein Similar to Mammalian Interleukin-1β-Converting Enzyme”, Cell, 75:641-652 (1993). |