Loo, J. A. “Studying Noncovalent Protein Complexes by Electrospray Ionization Mass Spectrometry” Mass Spectrometry Reviews, 1997, 16, 1-23.* |
Janda, K. D.; Lo, C. -H. L.; Li, T.; Barbas, C. F.; Wirsching, P.; Lerner, R. A. “Direct selection for a catalytic mechanism from combinatorial antibody libraries” PNAS Mar. 1994, 91, 2532-2536.* |
Ganem, B.; Li, Y. T.; Henion, J. D. “Detection of noncovalent receptor-ligand complexes by mass spectrometry” Journal of the American Chemical Society 1991, 113(16), 6294-6.* |
Przybylski, M.; Glocker, M. O. Angew. Chem. Int. Ed. Engl. 1996, 35, 806-826.* |
Wunsch, E.; Spangenberg, R., in Peptides, 1969, E. Schoffone, Ed., North Holland Amsterdam, P. 1971.* |
Greene, T. W.; Wuts, P. G. M. in Protective Groups in Organic Synthesis, 1999, John Wiley & Sons, Inc., New York, p. 487.* |
Delano, W. L. “Unraveling hot spots in binding interfaces: progress and challenges” Current Opinion in Structural Biology 2002, 12, 14-20.* |
Abraham, D.J. et al., “How Allosteric Effectors Can Bind to the Same Protein Residue and Produce Opposite Shifts in the Allosteric Equilibrium” Biochemistry 34L150006-15020 (1995). |
Boyiri, T. et al., “Bisaldehyde Allosteric Effectors as Molecular Ratchets and Probes” Biochemistry 34:15021-15036 (1995). |
Bunyapaiboonsri et al., “Dynamic Deconvolution of a Pre-Equilibrated Dynamic Combinatorial Library of Acetylcholinesterase Inhibitors” ChemBioChem 2:438-444 (2001). |
DeJarias et al., “Use of X-ray Co-crystal Structures and Molecular Modeling to Design Potent and Selective Non-peptide Inhibitors of Cathepsin K” J. Am. Chem. Soc. 120(35):9114-9115 (1998). |
Erlanson et al., “Site-Directed ligand discovery” PNAS 97(17):9367-9372 (Aug. 15, 2000). |
Hopkins et al., “Suicide Inhibitor of Cytochrome P450 1A1 and P450 2B1” Biochem. Pharmacol. 44(4):787-796 (1992). |
Lehn, Jean-Marie, “Dynamic Combinatorial Chemistry and Virtual Combinatorial Libraries” Chem. Eur. J. 5(9)2455-2463 (1999). |
Mathews et al., “N-Alkylaminobenzotriazoles as Isozyme-Selective Suicide Inhibitors of Rabbit Pulmonary Microsomal Cytochrome P-450” Mol. Pharmacol. 39(10):25-32 (1986). |
Nicolaou et al., “Combinatorial Synthesis Through Disulfide Exchange: Discovery of Potent Psammaplin A Type Antibacterial Agents Active against Methicillin-Resistant Staphylociccus Aureus (MRSA)” Chem. Eur. J. 7(19):4280-4295 (2001). |
Nicolaou et al., “Synthesis and Biological Evaluation of Vancomycin Dimers with Potent Activity against VANCOMYCIN-Resistant Bactewria: Target Accelarated Combinatorial Synthesis” Chem. Eur. J. 7(17):2824-2843 (2001). |
Pollack, S. J. et al., “introduction of Nucelophines and Spectotroscopic Probes into Antibody Combining Sites” Science 242:1038-1040 (1998). |
Ramstrom and Lehn, “In Situ Generation and Screening of a Dynamic Combinatorial Carbohydrate Library against Concanavalin A” ChemBioChem 1:41-48 (2000). |
Stanojevic and Verdine, “Deconstruction of GCN4/GCRE into a monomeric peptide-DNA complex” Nature Structural Biology 2:450-455 (Jun. 1995). |
Woodcroft et al., “N-Aralkylated derivatives of 1-aminobenzotriazole as isozyme-selective mechanism-based inhibitors of guinea pig hepatic cytochrome P-450 dependent monooxygenase activity” Can J. Physiol. Pharmacol. 68(9):1278-1285 (1990). |
Zhang et al., “Covalent Modification and Active Site-Directed Inactivation of a low Molecular Weight Phosphotyrosyl Protein Phosphatase” Biochemistry 31(6):1701-1711 (1992). |