Simone, Oncology: Introduction, Cecil Textbook of Medicine, 20th Edition, vol. 1, 1004-10, 1996.* |
Bejsovec, PubMed Abstract (Curr. Biol. 9(18):R684-7), Sep. 1999.* |
Arango, D., et al., Cancer Research, 61: 4910-4915 (2001). |
B. Ribinfeld, et al., Science, 272: 1023 (1996). |
Behrens, et al., Nature, 382: 638-642 (1996). |
Bubinfeld, et al., Science, 275: 1790-1792 (1997). |
Cardigan and Nusse, Genes Dev., 11: 3286-3305 (1997). |
Casa, et al., Cell. Growth Differ., 10:369-376 (1999). |
Chrivia, et al., Nature, 365: 855-859 (1993). |
Crawford, et al., Oncogene, 18: 2883-2891 (1999). |
Eckner, et al., Genes. Dev., 8: 869-884 (1994). |
Gat, et al., Cell, 95: 605-614 (1998). |
Hayashi, et al., Proc. Natl. Sci. USA, 94: 242-247 (1997). |
He, et al., Science, 281: 1509-1512 (1998). |
He, et al., Cell 99: 335-345 (1999). |
Hecht, et al., EMBO J. 19:(8) 1839-1850 (2000). |
Hsu, et al., Mol. Cell. Biol., 18: 4807-4818 (1998). |
Janknecht and Hunter, Nature, 383: 22-23 (1996). |
Ken-Ichi Takemaru and Randall T. Moon, J. Cell. Biol., 149:(2) 249-254 (2000). |
Kinzler and Vogelstein, Cell, 87: 159-170 (1996). |
Kolligs, et al., Mol. Cell. Biol., 19: 5696-5706 (1999). |
Miller, et al., Oncogene, 18: 7860-7872 (1999). |
Molenaar, et l., Cell 86: 391-399 (1996). |
Moon, et al., Trends Genet., 13: 157-162 (1997). |
Morin, et al. Science, 275: 1787-1790 (1997). |
Moris, et al., Proc. Natl. Acad. Sci. USA, 93: 7950-7954 (1996). |
Nuse and Varmus, Cell 69: 1073-1087 (1992). |
Orford, et al., J. Cell. Biol., 146: 855-868 (1999). |
Polakis, Genes. Dev., 14: 1837-1851 (2000). |
Preifer and Polakis, Science, 287: 1606-1609 (2000). |
Roose, et al., Science, 285: 1923-1926 (1999). |
Sakanaka and William, J. Biol. Chem 274: 14090-14093 (1999). |
Sakanaka, et al., Proc. Natl. Acad. Sci. USA, 95: 3020-3023 (1998). |
Shaoqiong Chen, et al., J. Cell. Biol., 152:(1) 87-96 (2001). |
Shikama, et al., Trends. Cell. Biol., 7: 230-236 (1997). |
Shtutman, et al., Proc. Natl. Acad. Sci. USA, 11: 5522-5527 (1999). |
Stein, et al., J. Viol., 64:4421-4427 (1990). |
Strovel and Sussman, Exp. Cell. Res., 253: 637-648 (1999). |
Su, et al., Science, 262: 1734-1737 (1993). |
Tao Zhang, et al., Cancer Research, 62: 8664-8667 (2001). |
Tetsu and McCormick, Nature, 398: 422-426 (1999). |
Tong, D., et al., Oral Oncology 36: 236-241 (2000). |
Yost, et al., Genes Dev., 10: 1443-1454 (1996). |
Cheguillaume, A. et al., “New Potential Monomers for Solid Phase Synthesis of Hydrazinopeptoids: the Na-Substituted-Nβ-Protected Hydrazinoglycines and Hydrazonoglycinals,” Synlett 2000, No. 3, pp. 331-334, Mar. 2000. |
DasGupta, R. and Fuchs, E., “Multiple roles for activated LEF/TCF transcription complexes during hair follicle development and differentiation,” Development 126: 4557-4568, 1999. |
Dolle, R.E., “Comprehensive Survey of Combinatorial Library Synthesis: 1999,” Journal of Combinatorial Chemistry 2(5): 383-433, Sep./Oct. 2000. |
Dooley and Houghten, “The use of positional scanning synthetic peptide combinatorial libraries for the rapid determination of opioid receptor ligands,” Life Sciences 52(18): 1509-1517, 1993. |
Dooley, C.T. et al., “Acetalins: Opioid receptor antagonists determined through the use of synthetic peptide combinatorial libraries,” Proc. Natl. Acad. Sci. USA 90: 10811-10815, Nov. 1993. |
Dooley, C.T. et al., “An All D-Amino Acid Opioid Peptide with Central Analgesic Activity from a Combinatorial Library,” Science 266: 2019-2022, Dec. 23, 1994. |
Eichler, J. et al., “Cyclic Peptide Template Combinatorial Libraries: Synthesis and Identification of Chymotrypsin Inhibitors,” Peptide Research 7(6): 300-307, 1994. |
Fujimuro, M. et al., “A novel viral mechanism for dysregulation of β-catenin in Kaposi's sarcoma-associated herpesvirus latency,” Nature Medicine 9(3): 300-306, Mar. 2003. |
Gallop, M.A. et al., “Applications of Combinatorial Technologies to Drug Discovery. 1. Background and Peptide Combinatorial Libraries,” Journal of Medicinal Chemistry 37(9): 1233-1251, Apr. 29, 1994. |
Graminski and Lerner, “A Rapid Bioassay for Platelet-Derived Growth Factor β-Receptor Tyrosine Kinase Function,” Bio/Technology 12: 1008-1011, Oct. 1994. |
Hartmann, D., “From Alzheimer's disease to skin tumors: The catenin connection,” Proc. Natl. Acad. Sci. USA 98(19): 10522-10523, Sep. 11, 2001. |
Houghten and Dooley, “The use of synthetic peptide combinatorial libraries for the determination of peptide ligands in radio-receptor assays: opioid peptides,” Bioorganic & Medicinal Chemistry Letters 3(3): 405-412, 1993. |
Houghten, R.A. et al., “Generation and use of synthetic peptide combinatorial libraries for basic research and drug discovery,” Nature 354: 84-86, Nov. 7, 1991. |
Houghten, R.A. et al., “The Use of Synthetic Peptide Combinatorial Libraries for the Identification of Bioactive Peptides,” BioTechniques 13(3): 412-421, 1992. |
Janda, K.D., “Tagged versus untagged libraries: Methods for the generation and screening of combinatorial chemical libraries,” Proc. Natl. Acad. Sci. USA 91: 10779-10785, Nov. 1994. |
Lam, K.S. et al., “A new type of synthetic peptide library for identifying ligand-binding activity,” Nature 354: 82-84, Nov. 7, 1991. |
Mak, B.C. et al., “The Tuberin-Hamartin Complex Negatively Regulates β-Catenin Signaling Activity,” The Journal of Biological Chemistry 278(8): 5947-5951, Feb. 21, 2003. |
Randolph, J.T. et al., “Major Simplifications in Oligosaccharide Syntheses Arising from a Solid-Phase Based Method: An Application to the Synthesis of the Lewis b Antigen.” J. Am. Chem. Soc. 117, 5712-19, 1995. |
Stewart, John M. and Young Janis D., Solid Phase Peptide Synthesis, Pierce Chemical Comp., Rockford, Ill., 1984. |
Tumelty, D. et al., “Immobilised, Activated Peptides as Reagents for Cyclic and Derivatised Peptide Libraries,” J. Chem. Soc. Chem. Commun., pp. 1067-1068, 1994. |
Zaloom and Roberts, “Preparation of Azido Derivatives from Amino Acids and Peptides by Diazo Transfer,” J. Org. Chem. 46: 5173-5176, 1981. |