| Louis et al Substitution of the highly conserved arginine 87 of HIV-protease resuls in loss of proteolytic activity. Biochemical and Biophysical Research Communications 164(1) 30-37, Oct. 1989. |
| Kanaya et al. Introduction of a Non-native dislfide bridge to human lysozyme by cystein scanning muatgensis. Biochemical and Biophysical Research Communications 173(3) 1194-1199, Dec. 1990. |
| Villafranca et al. An engineered disulfide bond in dihydrofolate reductase. Biochemistry 26: 2182-2189, 1987. |
| Allen et al. Antibody engineering for the analysis of affinity maturation of an anti-hapten response. EMBO Journal 7(7): 1995-2001, 1988.* |
| Loeb D. Complete Mutagenesis of the HIV-1 Protease. Nature vol. 340 Aug. 3, 1989, pp. 397-400.* |
| I.S. Dunn et al., “Improved Peptide Function from Random Mutagenesis Over Short ‘Windows’,” Protein Engineering, 2(4): 283-291 (1988). |
| A.R. Oliphant et al., “An Efficient Method for Generating Proteins with Altered Enzymatic Properties: Application to β-Lactamase,” Proc. Nat'l Acad. Sci. USA, 86: 9094-9098 (Dec. 1989). |
| P.M. Lehtovaara et al., “A New Method for Random Mutagenesis of Complete Gene: Enzymatic Generation of Mutant Libraries in vitro”, Protein Engineering, 2: 63-68 (1988). |
| T.A. Craig et al., “Site-Specific Mutagenesis of the α-Helices of Calmodulin”, J. of Biol. Chem., 262(7): 3278-3284 (1987). |
| R.J. Kuhn et al., “Construction of a ‘mutagenesis cartridge’ for Poliovirus Genome-linked Viral Protein: Isolation and Characterization of Viable and Nonviable Mutants,” Proc. Natl. Acad. Sci. USA, 85: 519-523 (1988). |
| R. Murray et al., “Random Oligonucleotide Mutagenesis: Application to a Large Protein Coding Sequence of a Major Histocompatibility Complex Class I Gene, H-2DP,” Nucleic Acids Research, 16(20): 9761-9773 (1988). |
| J.F. Reidhaar-Olson et al., “Combinatorial Cassette Mutagenesis as a Probe of the Informational Content of Protein Sequences,” Science, 241: 53-57 (1988). |
| A.R. Oliphant et al., “The Use of Random-Sequence Oligonucleotides for Determining Consensus Sequences,” Methods in Enzymology, 155: 568-582 (1987). |
| D.E. Hill et al., “Mutagenesis with Degenerate Oligonucleotides: An Efficient Method for Saturating a Defined DNA Region with Base Pair Substitutions,” Methods in Enzymology, 155: 558-568 (1987). |
| Wm. D. Huse et al., Generation of a Large Combinatorial Library of the Immunglobulin Repertoire in Phage Lambda, Science, 246: 1275-1281 (1989). |
| J. W. Jacobs, “New Perspectives on Catalytic Antibodies,” Bio/Technology, 9: 258-262 (1991). |
| E. Baldwin et al., “Generation of a Catalytic Antibody by Site-Directed Mutagenesis” Science, 245: 1104-1107 (1989). |
| B.L. Iverson et al., “Metalloantibodies” Science, 249: 659-662 (1990). |
| T.J.R. Harris, “Catalytic Antibodies—Something for Everyone”, Trends in Biotechnology, 9: 39-41 (1991). |
| J.R. Knowles., “Tinkering with Enzymes: What Are We Learning”, Science, 236: 1253-1258 (1987). |
| S.C. Blacklow et al., “Manipulative Mutagenesis of Enzymes”, In: Protein & Pharmaceutical Engineering, C.S. Craik et al., Eds. (Wiley-Liss, New York), pp. 159-166 (1990). |
| B.C. Cunningham et al., “Receptor and Antibody Epitopes in Human Growth Hormone Identified by Homolog-Scanning Mutagenesis”, Science, 243: 1330-1336 (1989). |
| B.C. Cunningham et al., “High-Resolution Epitope Mapping of hGH-Receptor Interactions by Alanine-Scanning Mutagenesis”, Science, 244: 1081-1085 (1989). |
| J.D. Hermes et al., “A reliable method for random mutagenesis: the generation of mutant libraries using spiked oligodeoxyribonucleotide primers”, Gene, 84:143-151 (1989). |
| Hostomsky et al. Biochemical & Biophysical Research Communications vol. 161, #3 pp 1056-1063 (1989), “High-Level Expression of Self-Processed HIV-1 Protease in Escherichia coli Using a Synthetic Gene”. |