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84 4 Biocatalytic Redox Cascades Involving -Transaminases
and Kudome, T. (2000) J. Mol. Catal. B: 13. Yun, H., Hwang, B.Y., Lee, J.H., and
Enzym., 10, 281–290. Kim, B.G. (2005) Appl. Environ. Micro-
9. Selected review articles:(a) Mathew, biol., 71, 4220–4224.
S. and Yun, H. (2012) ACS Catal., 2, 14. (a) Shin, J.S., Kim, B.G., Liese, A., and
993–1001; (b) Malik, M.S., Park, E.-S., Wandrey, C. (2001) Biotechnol. Bio-
and Shin, J.-S. (2012) Appl. Micro- eng., 73, 179–187; (b) Shin, J.S. and
biol. Biotechnol., 94, 1163–1171; (c) Kim, B.G. (1997) Biotechnol. Bioeng., 55,
Tufvesson, P., Lima-Ramos, J., Jensen, 348–358.
J.S., Al-Haque, N., Neto, W., and 15. (a) Matcham, G.W. and Bowen, A.R.S.
Woodley, J.M. (2011) Biotechnol. Bioeng., (1996) Chim. Oggi, 14, 20–24; (b) Cho,
108, 1479–1493; (d) Koszelewski, D., B.K., Park, H.Y., Seo, J.H., Kinnera,
Tauber, K., Faber, K., and Kroutil, W. K., Lee, B.S., and Kim, B.G. (2004)
(2010) Trends Biotechnol., 28, 324–332; Biotechnol. Bioeng., 88, 512–519.
(e) Hailes, H.C., Dalby, P.A., Lye, G.J., 16. For application of an engineered ω-TA
Baganz, F., Micheletti, M., Szita, N., in the industrial synthesis of sitagliptin:
and Ward, J.M. (2010) Curr. Org. (a) Savile, C.K., Janey, J.M., Mundorff,
Chem., 14, 1883–1893; (f) Ward, J. E.C., Moore, J.C., Tam, S., Javis, W.R.,
and Wohlgemuth, R. (2010) Curr. Org. Colbeck, J.C., Krebber, A., Fleitz, F.J.,
Chem., 14, 1914–1927; (g) Zhu, D. Brands, J., Devine, P.N., Huisman,
and Hua, L. (2009) Biotechnol. J., 4, G.W., and Hughes, G.J. (2010) Science,
1420–1431. 329, 305–309; for the ω-TA catalyzed
10. Selected examples: (a) Pressnitz, D., synthesis of rivastigmine see: (b) Fuchs,
Fuchs, C.S., Sattler, J.H., Knaus, T., M., Koszelewski, D., Tauber, K., Sattler,
Macheroux, P., Mutti, F.G., and Kroutil, J., Banko, W., Holzer, A.K., Pickl, M.,
W. (2013) ACS Catal., 3, 555–559; (b) Kroutil, W., and Faber, K. (2012) Tetra-
Mutti, F.G., Fuchs, C.S., Pressnitz, D., hedron, 68, 7691–7694; (c) Fuchs, M.,
Turrini, N.G., Sattler, J.H., Lerchner, Koszelewski, D., Tauber, K., Kroutil, W.,
A., Skerra, A., and Kroutil, W. (2012) and Faber, K. (2010) Chem. Commun.,
Eur. J. Org. Chem., 5, 1003–1007; (c) 46, 5500–5502.
Mutti, F.G., Fuchs, C.S., Pressnitz, D., 17. (a) Truppo, M.D., Rozzell, J.D., Moore,
Sattler, J.H., and Kroutil, W. (2011) J.C., and Turner, N.J. (2009) Org.
Adv. Synth. Catal., 353, 3227–3233; Biomol. Chem., 7, 395–398; (b) Iwasaki,
(d) Sch¨ atzle, S., Steffen-Munsberg, F., A.,Yamada, Y.,Ikenaka,Y., and
Thontowi, A., H¨ ohne, M., Robins, K., Hasegawa, J. (2003) Biotechnol. Lett.,
and Bornscheuer, U. (2011) Adv. Synth. 25, 1843–1846.
Catal., 353, 2439–2445; (e) Bea, H.-S., 18. Wang, B., Land, H., and Berglund, P.
Park, H.-J., Lee, S.-H., and Yun, H. (2013) Chem. Commun., 49, 161–163.
(2011) Chem. Commun., 47, 5894–5896; 19. H¨ ohne, M., K¨ uhl, S., Robins, K., and
(f) Truppo, M.D., Rozzell, J.D., and Bornscheuer, U.T. (2008) ChemBioChem,
Turner, N.J. (2010) Org. Process Res. 9, 363–365.
Dev., 14, 234–237. 20. Yun, H. and Kim, B.-G. (2008) Biosci.
11. (a) Oroz-Guinea, I. and Garc ´ ıa-Junceda, Biotechnol. Biochem., 72, 3030–3033.
E. (2013) Curr. Opin. Chem. Biol., 17, 21. Shin, J.-S. and Kim, B.-G. (1999) Biotech-
236–249; (b) Ricca, E., Brucher, B., and nol. Bioeng., 65, 206–211.
Schrittwieser, J.H. (2011) Adv. Synth. 22. Koszelewski, D., Lavandera, I., Clay, D.,
Catal., 353, 2239–2262; (c) Schrittwieser, Guebitz, G.M., Rozzell, D., and Kroutil,
J.H., Sattler, J., Resch, V., Mutti, F.G., W. (2008) Angew. Chem. Int. Ed., 47,
and Kroutil, W. (2011) Curr. Opin. 9337–9340.
Chem. Biol., 15, 249–256; (d) Bruggink, 23. (a) Malik, M.S., Park, E.-S., and Shin,
A., Schoevaart, R., and Kieboom, T. J.-S. (2012) Green Chem., 14, 2137–2140;
(2003) Org. Process Res. Dev., 7, 622–640. (b) Hwang, J.-Y., Park, J., Seo, J.-H.,
12. (a) Noe, F.F. and Nickerson, W.J. (1958) Cha, M., Cho, B.-K., Kim, J., and Kim,
J. Bacteriol., 75, 674–681; (b) Kim, K.H. B.-G. (2009) Biotechnol. Bioeng., 102,
(1964) J. Biol. Chem., 239, 783–786. 1323–1329; (c) Helaine, V., Rossi, J.,