Joo, Hyun; Lin, Zhanglin; and Arnold, Frances H. “Laboratory evolution of peroxide-mediated cytochrome P450 hydroxylation” Nature. vol. 399. (Jun. 1999) pp. 670-673. |
Aoyama T, et al. (1989) Journal Of Biological Chemistry, 264 (18): 10388-10395. |
Crameri et al. (1998) Nature, 391:288-291. |
Dierks E. A. etal. (1998) Journal of Biological Chemistry 273(36):23055-23061. |
Gotoh, O. (1992) Journal of Biological Chemistry 267(1): 443-478. |
Lewis, D. F. V. & Lake B. G. (1997) Xenobiotica, 27(5): 443-478. |
O'Keefe D. P. et al (1991) Molecular Microbiology 5(9): 2099-2105. |
Panke, S. et al. (1998) Applied and Environmental Microbiology, 64(6): 2032-2043. |
Pompon, D. & Nicholas A. (1989) Gene, 83(1):15-24. |
Ruettinger, R. T. et al. (1989) Journal of Biological Chemistry, 264(19): 10987-10995. |
Sevrioukova, I. F. & Peterson, J. A. (1995) Biochimie, 77: 562-572. |
Shimoji,M. et al. (1998) Biochemistry, 37(25): 9959-8852. |
Valetti F. et al. (1998) Biosensors and Bioelectronics, 13: 675-685. |
Wackett, L. P. (1998) Annals New York Academy of Science, 864:142-152. |
Watanabe, I. & Serizawa, N. (1998) Gene, 210(1):109-116. |
Database EMBL Nucleotide & Protein Sequences, Jun. 10, 1997, AP002124402, Hinxton GB. |
Database WPI, Section Ch, Week 199314, Derwent Publication Ltd., London, GB: Class B04, An 1993-111879, XP002124410. |
Chang, C., et al. (1999) “Evolution of a cytokine using DNA family shuffling.” Nature Biotechnology 17:793-797. |
Christians, F.C. et al., (1999) “Directed evolution of thymidine kinase for AZT phosphorylation using DNA family shuffling.” Nature Biotechnology 17:259-264. |
Crameri et al., (1993) “10(20)-Fold aptamer library amplification without gel purification,” Nuc. Acids Res. 21(18):4410. |
Crameri, A. & Stemmer, W.P.C. (1995) “Combinatorial multiple cassette mutagenesis creates all the permutations of mutant and wildtype cassettes.” Biotechniques 18:194-195. |
Crameri, A. et al. (1996) “Construction and evolution of antibody-phage libraries by DNA shuffling.” Nature Medicine 2:100-103. |
Crameri, A. et al., (1997) “Molecular evolution of an arsenate detoxification pathway by DNA shuffling.” Nature Biotechnology 15:436-438. |
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. |
Minshull, J., Stemmer, W.P.C. (1999) “Protein evolution by molecular breeding.” Current Opinion in Chemical Biology 3:284-290. |
Ness, J. et al., (1999) “DNA shuffling of subgenominc sequences of subtilisin.” Nature Biotechnology 17:893-896. |
Patten, P.A. et al., (1997) “Application of DNA Shuffling to Pharmaceuticals and Vaccines.” Current Opinion in Biotechnology 8:724-733. |
Stemmer, W.P.C. (1996) “Sexual PCR and Assembly PCR.” In: The Encyclopedia of Molecular Biology. VCH Publishers, New York. pp. 447-457. |
Stemmer, W.P.C. & Soong, N.W. (1999) “Molecular breeding of viruses for targeting and other clinical properties.” Tumor Targeting 4:59-62. |
Zhang, J. et al., (1997) “Directed evolution of an effective fucosidase from a galactosidase by DNA shuffling and screening.” Proceedings of the National Academy of Sciences, USA 94:4504-4509. |
Aono et al., (1998) J. Bacteriol. 180:938-944. |
Beltrametti, et al., (1997) Appl. Environ. Microbiol. 63(6):2232-2239. |
Clever (1997) EMBO J. 16:2535-2544. |
Crameri et al. (1996) Nature Biotechnolog 14:315-319. |
Crameri et al. (1996) Nature Medicine 2(1): 1-3. |
Dierks et al., (1998) J. Biol. Chem. 273(36): 23055-61. |
Drauz & Waldmann eds. (1995) Enzyme Catalysis in Organic Synthesis, vol. II, Chapter B.6.1.4, VCH Publishers, Inc. 1995. |
Duport et al., (1998) Nature Biotechnol. 16:186. |
Gotoh, (1992) J. Biol. Chem. 267:83-90. |
Halpert et al., (1998) Drug Metabolism and Disposition 26(12):1223-1231. |
Iding et al. (1998) Biochem. Biophys. Acta 1358:307-313. |
Itoh et al., (1996) Biosci. Biotechnol. Biochem. 60(11): 1826-1830. |
Kieboom et al., (1998) J. Biol. Chem. 273: 85-91. |
Kiianitsa (1997) Proc. Natl. Acad. Sci. U.S.A. 94:7837-7840. |
Kim et al. (1998) J. Bacteriol. 180: 3692-2696. |
Kok et al., (1989) J. Biol. Chem. 264(10): 5435-5441. |
Kok et al., (1989) J. Biol. Chem. 264(10): 5442-5451. |
Li & Poulos (1997) Nature Struc. Biol. 4: 140-146. |
Li et al., (1998) J. Bacteriol. 180:2987-2991. |
Lee et al. (1996) Biochem. Biophys. Res. Commun. 218(1):17-21. |
Loida and Sligar (1993) Protein Eng. 6(2): 207-212. |
Marconi, et al. (1996) Appl. Environ. Microbiol. 62(1):121-127. |
Matsumoto et al. (1992) Chem. Pharm. Bull. (Tokyo) 40(7): 1721-1726. |
Matsumoto et al. (1994) Biol. Chem. Bull. 17(11):1441-1445. |
Matsumoto et al. (1995) Chem. Pharm. Bull. (Tokyo) 43(2):216-222. |
Namsaraev (1997) Mol. Cell. Biol. 17:5359-5368. |
O'Connor, et al., (1997) Appl. Environ. Microbiol. 63(11):4287-4291. |
Pinkart and White (1997) J. Bacteriol. 179:4219-4226. |
Pompon et al., (1996) Methods Enzymol. 272:51. |
Ramos et al., (1998) J. Bacteriol. 180: 3323-3329. |
Sevrioukova et al., (1999) PNAS 96:1863-1868. |
Stemmer (1994) Nature 370:389-391. |
Stemmer (1994) Proc. Natl. Acad. Sci. U.S.A. 91:10747-10751. |
Stemmer (1995) Bio/Technology 13:549-553. |
Stemmer et al. Gene 164:49-53. |
Stemmer (1995) Science 270:1510. |
Sung (1997) Genes Dev. 11:1111-1121. |
Van Beilen et al (1992) Mol. Microbiol. 6(21): 3121-3136. |
Velasco, et al., (1998) J. Bacteriol. 180(5): 1063-1071. |
Watanabe et al., (1995) Gene 163: 81-85. |
White, et al. (1997) J. Bacteriol. 179: 6122-6126. |
Wold (1997) Annu. Rev. Biochem. 66:61-92. |