2013. Yoshida M, Fujita T, Kurihara N, Nakajima M (1985) Pest. Biochem. Biophysiol. 23: 1
2014. Leisinger T, Bader R (1993) Chimia 47: 116
2015. Pavlova M, Klvana M, Prokop Z, Chaloupkova R, Banas P, Otyepka M, Wade RC,
Tsuda M, Nagata Y, Damborsky J (2009) Nat. Chem. Biol. 5: 727.
2016. Janssen DB (2004) Curr. Opin. Chem. Biol. 8: 150.
2017. Janssen DB (2007) Adv. Appl. Microbiol. 61: 233.
2018. Koudelakova T, Bidmanova S, Dvorak P, Pavelka A, Chaloupkova R, Prokop Z,
Damborsky J (2013) Biotechnol. J. 8: 32.
2019. Pieters RJ, Lutje Spelberg JH, Kellogg RM, Janssen DB (2001) 42: 469.
2020. Prokop Z, Sato Y, Brezovsky J, Mozga T, Chaloupkova R, Koudelakova T, Jerabek P,
Stepankova V, Natsume R, van Leeuwen JGE, Janssen DB, Florian J, Nagata Y, Senda T,
Damborsky J (2010) Angew. Chem. Int. Ed. 49: 6111.
2021. Westerbeek A, Szymanski W, Wijma HJ, Marrink SJ, Feringa BL, Janssen DB (2011) Adv.
Synth. Catal. 353: 931.
2022. Motosugi K, Esaki N, Soda K (1982) Agric. Biol. Chem. 46: 837
2023. Allison N, Skinner AJ, Cooper RA (1983) J. Gen. Microbiol. 129: 1283
2024. Kawasaki H, Tone N, Tonomura K (1981) Agric. Biol. Chem. 45: 35
2025. Onda M, Motosugi K, Nakajima H (1990) Agric. Biol. Chem. 54: 3031
2026. Tsang JSH, Sallis PJ, Bull AT, Hardman DJ (1988) Arch. Microbiol. 150: 441
2027. Little M, Williams PA (1971) Eur. J. Biochem. 21: 99
2028. Vyazmensky M, Geresh S (1998) Enzyme Microb. Technol. 22: 323
2029. Cambou B, Klibanov AM (1984) Appl. Biochem. Biotechnol. 9: 255
2030. Taylor SC (1990) (S)-2-Chloropropanoic acid by biotransformation. In: Copping LG,
Martin RE, Pickett JA, Bucke C, Bunch AW (eds) Opportunities in Biotransformations.
Elsevier, London, p 170
2031. Smith JM, Harrison K, Colby J (1990) J. Gen. Microbiol. 136: 881
2032. Barth PT, Bolton L, Thomson JC (1992) J. Bacteriol. 174: 2612
2033. Taylor SC (1997) (S)-2-Chloropropanoic Acid: Developments in Its Industrial Manufacture.
In: Collins AN, Sheldrake GN, Crosby J (eds) Chirality in Industry II. Wiley, Chichester, p
207
2034. Hasan AKMQ, Takata H, Esaki N, Soda K (1991) Biotechnol. Bioeng. 38: 1114
2035. Castro CE, Bartnicki EW (1968) Biochemistry 7: 3213
2036. Geigert J, Neidleman SL, Liu TN, DeWitt SK, Panschar BM, Dalietos DJ, Siegel ER (1983)
Appl. Environ. Microbiol. 45: 1148
2037. Nagasawa T, Nakamura T, Yu F, Watanabe I, Yamada H (1992) Appl. Microbiol.
Biotechnol. 36: 478
2038. Assis HMS, Sallis PJ, Bull AT, Hardman DJ (1998) Enzyme Microb. Technol. 22: 568
2039. Assis HMS, Bull AT, Hardman DJ (1998) Enzyme Microb. Technol. 22: 545
2040. Kasai N, Tsujimura K, Unoura K, Suzuki T (1990) Agric. Biol. Chem. 54: 3185
2041. Nakamura T, Yu F, Mizunashi W, Watanabe I (1991) Agric. Biol. Chem. 55: 1931
2042. Nakamura T, Nagasawa T, Yu F, Watanabe I, Yamada H (1992) J. Bacteriol. 174: 7613
2043. Kasai N, Tsujimura K, Unoura K, Suzuki T (1992) J. Ind. Microbiol. 9: 97
2044. Kasai N, Suzuki T, Furukawa Y (1998) J. Mol. Catal. B 4: 237
2045. Suzuki T, Kasai N (1991) Bioorg. Med. Chem. Lett. 1: 343
2046. Suzuki T, Kasai N, Minamiura N (1994) Tetrahedron Asymmetry 5: 239
2047. Kasai N, Suzuki T (2002) Adv. Synth. Catal. 345: 437
2048. de Vries EJ, Janssen DB (2003) Curr. Opinion Biotechnol. 14: 414
2049. Tang L, Lutje Spelberg JH, Fraaije MW, Janssen DB (2003) Biochemistry 42: 5378
2050. De Jong RM, Dijkstra BW (2003) Curr. Opinion Struct. Biol. 13: 722
2051. Haak RM, Tarabiono C, Janssen DB, Minnaard AJ, de Vries J G, Feringa BL (2007) Org.
Biomol. Chem. 5: 318
2052. van Hylckama Vlieg JET, Tang L, Lutje Spelberg JH, Smilda T, Poelarends GJ, Bosma T,
van Merode AEJ, Fraaije MW, Janssen DB (2001) J. Bacteriol. 183: 5058.
312
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