Chang, et al., “Evilution of a cytokine using DNA family shuffling” Nature Biology vol. 17 (1999) pp. 793-797. |
Crameri & Stemmer “1020-Fold aptamer library amplification without gel purification” Nucleic Acid Research (1993) vol. 21 No. 18, pp. 4410. |
Ness et al., “DNA Shuffling of Subgenomic sequences of subtilisin” Nature Biotechnology vol. 17 (1999) pp. 893-896. |
Capecchi, “Altering the Genome by Homologous Recombination” Science vol. 244 pp. 1288-1292. |
Larionov et al., “Highly Selective isolation of juman DNAs from rodent-human hybrid cells as circular yeast artificial chromosomes by transformation associated recombination cloning” Proc. Natl. Sci. USA vol. 93 pp. 13925-13930. |
Larionov et al., “Recombination during the transformation as a source of chimeric mammalian artifical chromosomes in yeast (YACs)” Nucleic Acid Research 1994, vol. 22, No. 20 4154-4162. |
Larionov et al., “Specific cloning of human DNA as yeast artificial chromosomes by transformation-associated recombination” PNAS vol. 93 (1995) pp. 491-496. |
Ragoussis et al., “Mitoic recombination of yeast artifical chromosomes” Nucleic Acid Research vol. 20, No. 12, 3135-3138. |
Rothwell, “Foundations of Genetics” Understanding Genetics (1976) 1-22 and 219 and 261. |
Spencer et al., “Targeted Recombiation-Based Cloning and Manipulation of Large DNA Segments in Yeast” Methods 5, 161-175 (1993). |
Allard, R.W., (1960) Principles of Plant Breeding, John Wiley and Sons, Inc., New York, Chapter 23 Recurrent Selection, pp. 282-302. |
William P.C. Stemmer, “DNA Shuffling by Random Fragmentation and Reassembly in Vitro Recombination for Molecular Evolution”, Proc. natl. Acad. Sci, 91:10747-10751 (10/94). |
William P.C. Stemmer, “Rapid Evolution of a Protein in Vitro by DNA Shuffling”, Nature 370:389-391 (Aug. 4, 1994). |
Stemmer, W.P.C. et al., (1995), Single-step assembly of a gene and entire plasmid form large numbers of oligodeoxyribonucleotides, Gene, 164:49-53. |
Stemmer, W.P.C., (1995), Searching Sequence Space, Bio/Technology 13:549-553. |
Stemmer, W.P.C., (1995), The Evolution of Molecular Computation, Science, 270:1510. |
Crameni, A. and Stemmer, W.P.C. (1995), Combinatorial multiple cassette mutagenesis creates all the permutations of mutant and wild-type cassettes, Biotechniques 18:194-195. |
Stemmer, W.P.C. (1996), Sexual PCR and Assembly PCR. in: The Encyclopedia of Molecular Biology, VCH Publishers, New York. Pp. 447-457. |
Gates, C.M. et al., (1996), Affinity selective isolation of ligands from peptide libraries through display on a lac repressor‘headpiece dimer’, Journal of Molecular Biology 255:373-386. |
Crameri, A. et al., (1996), Improve green fluorescent protein by molecular evolution using DNA shuffling, Nature Biotechnology 14:315-319. |
Crameri, A., et al., (1996), Construction and evolution of antibody-phage libraries by DNA shuffling, Nature Medicine 2:100-103. |
Zhang, J., et al., (1997), Directed evolution of fucosidase from a galactosidase by DNA shuffing and screening, Proceedings of the National Academy of Sciences, U.S.A. 94:4504-4509. |
Patten, P.A., et al., (1997), Applications of DNA Shuffling to Pharmaceuticals and Vaccines, Current Opinion in Biotechnology 8:724-733. |
Crameri, A., et al., (1997), Molecular evolution of an arsenate detoxification pathway by DNA shuffling, Nature Biotechnology 15:436-438. |
Gerritse, Gijs, et. al., (1998), The phenoltype enhancement method identifies the Xcp outer membrane secretion machinery from Pseudomonas alcaligenes as a bottleneck for lipase production, Journal of Biotechnology 24:23-38. |
Crameri, A., et al., (1998), DNA shuffling of a family of genes from diverse species accelerates directed evolution, Nature 391:288-291. |
Christians, F.C., et al. (1999), Directed evolution of thymidine kinase for AZT phosphorylation using DNA family shuffling, Nature Biotechnology 17:259-264. |
Minshull, J., et al., (1999), Protein evolution by molecular breeding, Current Opinion in Chemical Biology 3:284-290. |
Stemmer, W.P.C., et al., (1999) Molecular breeding of viruses for targeting and other clinical properties. Tumor Targeting 4:1-4. |
Edited by Gardner et al., Principles of Genetics, 1981, pp. 9-40, Sixth Edition, John Wiley & Sons, New York, New York. |
Alder, Jeffery, “Determining the Therapeutic Potential of Experimental Antibacterial Agents: The Use of Animal Models” Current Pharm. Design 1997, 3: 143-158. |
Hopwood, et al., “Factors Affecting Recombinant Frequency in Protoplast Fusions of Streptomyces coeilcolor” J. of General Microbiology (1979) 111, 137-143. |
Lavery et al. (1990) Properties of recA441 Protein-catalyzed DNA Strand Exchange Can Be Attributed to an Enhanced Ability to Compete with SSB Protein Journal of Biological Chemistry 265(7):4004-4010. |
Sipiczki et al., “Enzymic Methods for Enrichment of Fungal Mutants . . . ” Mutation Research (1978) 50:163-173. |