Durand et al., "Characterization of Antigen Receptor Response Elements Within the Interleukin-2 Enhancer"; Mol. Cell Biol. 8(2):1715-1724 (1988). |
Letourneur and Klausner, Activation of T Cells by a Tyrosine Kinase Activation Domain in the Cytoplasmic Tail of CD3 .epsilon.; Science 255:79-82 (1992). |
Flanagan et al., "Nuclear Association of a T-Cell Transcription Factor Blocked by FK-506 and Cyclosporin A"; Nature 352:803-807 (1991). |
Fisher et al., "On the Remarkable Propensity for Carbon-Carbon Bond Cleavage Reactions in the C.sub.8 -C.sub.10 Region of FK-506"; J. Org. Chem. 56:2900-2907 (1991). |
VanRheenen et al., "An Improved Catalytic OsO.sub.4 Oxidation of Olefins to Cis-1,2-Glycols Using Tertiary Amine Oxides as the Oxidant"; Tetrahedron Letters 23:1973-1976 (1976). |
Fields, S. and Song, O., "A novel genetic system to detect protein--protein interactions"; Nature 340:245-246 (1989). |
Ghosh et al., "N,N'-Disuccinimidyl Carbonate: A Useful Reagent for Alkoxycarbonylation of Amines"; Tetrahedron Letters 33:2781-2784 (1992). |
Zelle et al., "A Systematic Degradation of Zincophorin: A Stereoselective Synthesis of the C.sub.17 -C.sub.25 Fragment"; J. Org. Chem. 51:5032-5036 (1986). |
Krishnamurthy, "Lithium Tris[(3-ethyl-3-pentyl)oxy]aluminum Hydride. A New Remarkably Chemoselective Reagent for the Reduction of Aldehydes in the Presence of Ketones"; J. Org. Chem. 46:4628-4629 (1981). |
Nussbaumer et al., C9-Imino and C10-Amino Derivatives of Ascomycin (21-Ethyl-FK506); Tetrahedron Letters 33:3845-3846 (1992). |
Evans et al., "Rhodium(I)- and Iridium(I)-Catalyzed Hydroboration Reactions: Scope and Synthetic Applications"; J. Am. Chem. Soc. 114:6671-6679 (1992). |
Evans et al., "Mechanistic Study of the Rhodium(I)-Catalyzed Hydroboration Reaction"; J. Am. Chem. Soc. 114:6679-6685 (1992). |
Traber et al., "Cyclosporins--New Analogues by Precursor Directed Biosynthesis"; J. Antibiotics 42:591-597 (1989). |
Patchett et al., "Analogs of Cyclosporin A Modified at the D-ALA.sup.8 Position"; J. Antibiotics 45:94-102 (1992). |
Donald et al., "C10 N-Acyl Modified FK-506: A Possible Hybrid Analogue of the Transition State of Peptidyl-Prolyl Cis-Trans Isomerization"; Tetrahedron Letters 31:1375-1378 (1991). |
Byrn et al., "Biological Properties of a CD4 Immunoadhesin"; Nature 344:667-670 (1990). |
Lanier et al., "Co-association of CD3.zeta. with a Receptor (CD16) for IgG Fc on Human Natural Killer Cells"; Nature 342:803-805 (1989). |
Mattila et al., "The Actions of Cyclosporin A and FK506 Suggest a Novel Step in the Activation of T Lymphocytes"; EMBO J. 9(13):4425-4433 (1990). |
Verweij et al., "Cell Type Specificity and Activation Requirements for NFAT-1 (Nuclear Factor of Activated T-Cells) Transcriptional Activity Determined by a New Method Using Transgenic Mice to Assay Transcriptional Activity of an Individual Nuclear Factor"; J. Biol. Chem. 265(26):15788-15795 (1990). |
Clark et al., "The B Cell Antigen Receptor Complex: Association of Ig-.alpha. and Ig-.beta. with Distinct Cytoplasmic Effectors"; Science 258:123-126 (1992). |
Shaw et al., "Identification of a Putative Regulator of Early T Cell Activation Genes"; Science 241:202-205 (1988). |
Weissman et al., "Molecular Cloning and Chromosomal Localization of the Human T-Cell Receptor .zeta. Chain: Distinction from the Molecular CD3 Complex"; Proc. Natl. Acad. Sci. USA 85:9709-9713 (1988). |
Emmel et al., "Cyclosporin A Specifically Inhibits Function of Nuclear Proteins Involved in T-Cell Activation"; Science 246:1617-1620 (1989). |
Eberle and Nuninger, "Synthesis of the Main Metabolite (OL-17) of Cyclosporin A"; J. Org. Chem. 57:2689-2691 (1992). |
Irving and Weiss, "The Cytoplasmic Domain of the T Cell Receptor .zeta. Chain is Sufficient to Couple to Receptor-Associated Signal Transduction Pathways"; Cell 64:891-901 (1991). |
Kinet, "Antibody-Cell Interactions: Fc Receptors"; Cell 57:351-354 (1989). |
Orloff et al., "Family of Disulphide-Linked Dimers Containing the .zeta. and .eta. Chains of the T-Cell Receptor and the .gamma. Chain of Fc Receptors"; Nature 347:189-191 (1990). |
Itoh and Nagata, "A Novel Protein Domain Required for Apoptosis", JBC 268:10932-10937 (1993). |
Ptashne et al., "Activators and Targets", Nature 346:329-331 (1990). |
Schreiber, "Chemistry and Biology of the Immunophilins and Their Immunosuppressive Ligands", Science 251:283-287 (1991). |
Palmiter et al., "Transgenic Mice", Cell 41:343-345 (1985). |
Itoh et al., "Effect of bc1-2 on Fas Antigen-Mediated Cell Death", Journal of Immunology 151:621-627 (1993). |
Spencer et al (1993) Science 262:1019-1024. |
Watson et al. (1994) The G-Protein Linked Receptor Facts Book, Academic Press Limited, San Diego, pp. X-Xi, 3-6. |
Travis (1993) Science 262:989. |
Metzger et al. (1995) Proc. Natl. Acad. Sci. USA 92:6991-6995. |
Logie et al. (1995) Proc. Natl. Acad. Sci. USA 92:5940-5944. |
Kappel et al. (1992) Current Opinion in Biotechnology 3:548-553. |
Spencer et al. (1994) J. Cellular Biochemistry. Supp. 18A:252. |
Selvakumaran M., et al, "Myeloblastic leukemia cells conditionally blocked by myc-estrogen receptor chimeric transgenes for terminal differentiation coupled to growth arrest and apoptosis", (1993) Blood 81(9):2257-62. |
Weiss, A., "T cell antigen receptor signal transduction: a tale of tails and cytoplasmic protein-tyrosine kinases." (1993) Cell, 73(2):209-12. |
Rudert F., et al, "Apoptosis in L929 cells expressing a CD40/Fas chimeric receptor: dissociation of stimulatory from inhibitory death signalling functions.", (1994) Biochem Biophys Res Commun, 204(3):1102-10. |