Murakami et al., Nature Genet 10, 261-268 (Jul. 1995). |
Volckaert et al., Yeast 13 (3), 251-259 (1997). |
Garcia-Cantalejo et al., Yeast 10 (2), 231-245 (1994). |
Zuniga et al., Gene 233, 141-150 (Jun. 11, 1999). |
Pohl et al., Genbank Accession No. Z28296 Y13137, May 9, 1994. |
Pohl et al., Genbank Accession No. Z28304, Y13137, May 9, 1994. |
Agrawal and Iyer, 1997, “Perspectives in Antisense Therapeutics”, Pharmacol. Ther. 76:151-160. |
Altschul et al., 1997, “Gapped Blast and PSI-Blast: A New Generation of Protein Database Search Programs”, Nucl. Acids Res. 25:3389-3402. |
Brachmann et al., 1998, “Designer Deletion Strains Derived from Saccharomyces cerevisiae S288C: A Useful Set of Strains and Plasmids for PCR-Mediated Gene Disruption and Other Applications”, Yeast 14:115-132. |
Burbaum and Sigal, 1997, “New Technologies for High-Throughput Screening”, Curr. Opin. Chem. Biol. 1:72-78. |
Castanotto et al., 1998, “Structural Similarities Between Hammerhead Ribozymes and the Spliceosomal RNAs Could Be Responsible for Lack of Ribozyme Cleavage in Yeast”, Antisense & Nucl. Acid Drug Devel. 8:1-13. |
Chien et al., 1991, “The Two-Hybrid System: A Method to Identify and Clone Genes for Proteins that Interact with a Protein of Interest”, Proc. Natl. Acad. Sci. USA 88:9578-9582. |
Clackson, 1998, “Redesigning Small Molecule-Protein Interfaces”, Curr. Opin. Structural Biol. 8:451-458. |
Crooke, 1998, “Antisense Therapeutics”, Biotechnol. & Genetic Engineering Rev. 15:121-157. |
Cunningham and Wells, 1997, “Minimized Proteins”, Curr. Opin. Structural Biol. 7:457-462. |
Eckstein, 1997, “Exogenous Application of Ribozymes for Inhibiting Gene Expression”, in: Oligonucleotides as Therapeutic Agents, Ciba Foundation Symposium 209, John Wiley & Sons, Chichester, England, pp. 207-217. |
Garfinkel et al., 1998, “Ty Mutagenesis”, Meth. Microbiol. 26:101-117. |
Godowski et al., 1988, “Signal Transduction and Transcriptional Regulation by Glucocorticoid Receptor-LexA Fusion Proteins”, Science 241:812-816. |
Goffeau et al., 1996, “Life with 6000 Genes”, Science 274:546-567. |
Hubbard, 1997, “Can Drugs be Designed?”, Curr. Opin. Biotechnol. 8:696-700. |
Huse et al., 1989, “Generation of a Large Combinatorial Library of the Immunoglobulin Repertoire in Phage Lambda”, Science 246:1275-1281. |
Ito et al., 1983, “Transformation of Intact Yeast Cells Treated with Alkali Cations”, J. Bacteriol. 153:163-168. |
Johnson et al., 1992, “Ubiquitin as a Degradation Signal”, EMBO J. 11:497-505. |
Kanehisa, 1984, “Use of Statistical Criteria for Screening Potential Homologies in Nucleic Acid Sequences”, Nucl. Acids Res. 12:203-213. |
Kleinberg and Wanke, 1995, “New Approaches and Technologies in Drug Design and Discovery”, Am. J. Health Syst. Pharm. 52:1323-1336. |
Kubinyi, 1995, “Strategies and Recent Technologies in Drug Discovery”, Pharmazie 50:647-662. |
Lavrovsky et al., 1997, “Therapeutic Potential and Mechanism of Action of Oligonucleotides and Ribozymes”, Biochem. & Mol. Med. 62:11-22. |
Mattos and Ringe, 1996, “Locating and Characterizing Binding Sites on Proteins”, Nature Biotechnol. 14:595-599. |
Merrifield and Stewart, 1965, “Automated Peptide Synthesis”, Nature 207:522-523. |
Mewes et al., 1997, “Overview of the Yeast Genome”, Nature 387 (Supp.):7-65. |
Nasr et al., 1995, “Artificial Antisense RNA Regulation of YBR1012(YBR136w), an Essential Gene from Saccharomyces cerevisiae which Is Important for Progression through G1/S”, Mol. Gen. Genet. 249:51-57. |
Olsson et al., 1997, “Silencing MIG1 in Saccharomyces cerevisiae: Effects of Antisense MIG1 Expression and MIG1 Gene Disruption”, Appl. Environ. Microbiol. 63:2366-2371. |
Pearson, 1990, “Rapid and Sensitive Sequence Comparison with FASTP and FASTA”, Meth. Enzymol. 183:63-98. |
Pearson, 1994, “Using the FASTA Program to Search Protein and DNA Sequence Databases”, Meth. Mol. Biol. 24:307-331. |
Rothstein, 1991, “Targeting, Disruption, Replacement, and Allele Rescue: Integrative DNA Transformation in Yeast”, Meth. Enzymol. 194:281-301. |
Schiestl and Gietz, 1989, “High Efficiency Transformation of Intact Yeast Cells Using Single Stranded Nucleic Acids as a Carrier”, Curr. Genet. 16:339-346. |
Schullek et al., 1997, “A High-Density Screening Format for Encoded Combinatorial Libraries: Assay Miniaturization and Its Application to Enzymatic Reactions”, Anal. Biochem. 246:20-29. |
Sherman, 1991, “Getting Started with Yeast”, Meth. Enzymol. 194:3-21. |
Sherman and Wakem, 1991, “Mapping Yeast Genes”, Meth. Enzymol. 194:38-57. |
Stark, 1998, “Studying Essential Genes: Generating and Using Promoter Fusions and Conditional Alleles”, Meth. Microbiol. 26:83-99. |
Vaughan et al., 1996, “Human Antibodies with Sub-Nanomolar Affinities Isolated from a Large Non-Immunized Phage Display Library”, Nature Biotechnol. 14:309-314. |
Wach et al., 1994, “New Heterologous Modules for Classical or PCR-Based Gene Disruptions in Saccharomyces cerevisiae”, Yeast 10:1793-1808. |
Ward et al., 1989, “Binding Activities of a Repertoire of Single Immunoglobulin Variable Domains Secreted from Escherichia coli”, Nature 341:544-546. |
Zhao and Lemke, 1998, “Rules for Ribozymes”, Mol. Cell. Neurosci. 11:92-97. |