Page 319 - Cascade_Biocatalysis_Integrating_Stereoselective_and_Environmentally_Friendly_Reactions
P. 319
References 295
22. Cantarella, L., Gallifuoco, A., Malandra, 29. Chen, C.Y., Chen, S.C., Fingas, M.,
A., Martinkov´ a, L., Pasquarelli, F., Spera, and Kao, C.M. (2010) Biodegradation
A., and Cantarella, M. (2010) Application of propionitrile by Klebsiella oxytoca
of continuous stirred membrane reactor immobilized in alginate and cellulose
to 3-cyanopyridine bioconversion using triacetate gel. J. Hazard. Mater., 177,
the nitrile hydratase-amidase cascade 856–863.
system of Microbacterium imperiale CBS 30. Jin, L.Q., Liu, Z.Q., Xu, J.M., and
498-74. Enzyme Microb. Technol., 47, Zheng, Y.G. (2013) Biosynthesis of
64–70. nicotinic acid from 3-cyanopyridine
23. Cantarella, M., Cantarella, L., Gallifuoco, by a newly isolated Fusarium prolifer-
A., Intellini, R., Kaplan, O., Spera, A., atum ZJB-09150. World J. Microbiol.
and Martinkov´ a, L. (2008) Amidase- Biotechnol., 29, 431–440.
catalyzed production of nicotinic acid in 31. Kazuyuki Yasukawa, K., and Asano, Y.
batch and continuous stirred membrane (2012) Enzymatic synthesis of chiral
reactors. Enzyme Microb. Technol., 42, phenylalanine derivatives by a dynamic
222–229. kinetic resolution of corresponding
24. Cantarella, M., Gallifuoco, A., Spera, amide and nitrile substrates with a
A., Cantarella, L., Kaplan, O., and multi-enzyme system. Adv.Synth.Catal.,
Martinkov´ a, L. (2008) in Modern 354, 3327–3332.
Biocatalysis Stereoselective and Environ- 32. Raj, J., Seth, A., Prasad, S., and Bhalla,
mentally Friendly Reactions,Chapter 17 T.C. (2007) Bioconversion of butyroni-
(eds W.-D. Fessner and T. Anthonsen), trile to butyramide using whole cells of
Wiley VCH Verlag GmH& Co. KGaA, Rhodococcus rhodochrous PA-34. Appl.
Weinheim, pp. 273–286. ISBN: 978-3- Microbiol. Biotechnol., 74, 535–539.
527-32071-4 33. Cantarella, M., Cantarella, L., Gallifuoco,
25. Bisswanger, H. (2008) Enzyme Kinet- A., Spera, A., and Martinkov´ a, L.
ics: Principles and Methods, 2nd edn, (2012) Nicotinic acid bio-production
Wiley-VCH Verlag GmbH & Co. KgaA. by Microbacterium imperiale CBS 489-74:
26. Cantarella, L., Gallifuoco, A., Malandra, effect of 3-cyanopyridine and tem-
A., Martinkov´ a, L.,Spera,A., and perature on amidase activity. Process
Cantarella, M. (2011) High-yield con- Biochem., 47, 1192–1196.
tinuous production of nicotinic acid 34. Cantarella, L., Gallifuoco, A., Spera,
via nitrile hydratase–amidase cascade A., and Cantarella, M. (2013) Nitrile,
reactions using cascade CSMRs. Enzyme amide and temperature effects on
Microb. Technol., 48, 345–350. amidase-kinetics during acrylonitrile bio-
27. Xue, R. and Woodley, J.M. (2012) Pro- conversion by nitrile-hydratase/amidase
cess technology for multi-enzymatic in-situ cascade system. Bioresour. Tech-
reaction systems. Bioresour. Technol., nol., 142, 320–328.
115, 183–195. 35. Feng, H.-S., Chen, P.-C., Wen, F.-S.,
28. Graham, D., Pereira, R., Barfield, D., Hsiao, W.-Y., and Lee, C.-M. (2008)
and Cowan, D.A. (2000) Nitrile biotrans- Nitrile hydratase from Mesorhizobium
formations using free and immobilized sp. F28 and its potential for nitrile Bio-
cells of a thermophilic Bacillus spp. transformation. Process Biochem., 43,
Enzyme Microb. Technol., 26, 368–373. 1391–1397.