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Chapter 1 Chairman's creation (pages 1–2): A. R. Battersby
Chapter 2 An Illustrative instance of a Synthetically invaluable Enzyme: Horse Liver Alcohol Dehydrogenase (pages 3–21): J. Bryan Jones
Chapter three Enzymic Synthesis of Labelled Chiral elements (pages 22–30): Alan R. Battersby
Chapter four Enzyme?Controlled Reactions Giving Alkanols of Use within the Synthesis of Biologically energetic Molecules (pages 31–39): Stanley M. Roberts
Chapter five Large?Scale Purification of Enzymes (pages 40–56): Michael D. Scawen
Chapter 6 Immobilized Enzymes in natural Synthesis (pages 57–75): Klaus Mosbach
Chapter 7 purposes of Cell?Free Enzymes in natural Synthesis (pages 76–96): George M. Whitesides
Chapter eight Chiral items from Non?Pyridine Nucleotide?Dependent Reductases and techniques for NAD(P)H Regeneration (pages 97–111): Helmut Simon, Helmut Gunther, Johann Bader and Stefan Neumann
Chapter nine Stereochemistry and artificial functions of goods of Fermentation of ???Unsaturated fragrant Aldehydes through Baker's Yeast (pages 112–127): Claudio Fuganti and Piero Grasselli
Chapter 10 Extending the Applicability of Esterases of Low Enantioselectivity in uneven Synthesis (pages 128–145): Yi?Fong Wang, Ching?Shih Chen, Gary Girdaukas and Charles J. Sih
Chapter eleven Microbial modifications of a few Monoterpenoids and Sesquiterpenoids (pages 146–170): W. R. Abraham, H. M. R. Hoffmann, okay. Kieslich, G. Reng and B. Stumpf
Chapter 12 production of Novel Chiral Synthons with Enzymes: software to Enantioselective Synthesis of Antibiotics (pages 171–187): Masaji Ohno
Chapter thirteen Kinetics of Trypsin Catalysis within the commercial Conversion of Porcine Insulin to Human Insulin (pages 188–203): Jan Markussen and Aage Volund
Chapter 14 remodeling Enzymes via Site?Directed Mutagenesis (pages 204–218): A. R. Fersht and G. P. Winter
Chapter 15 The layout of recent Enzyme energetic websites for the Catalysis of particular Chemical Reactions (pages 219–237): Emil Thomas Kaiser and Czeslaw Radziejewski

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In: Epton R (ed) Chromatography of synthetic and biological polymers. Ellis Horwood, Chichester. UK, vol 2: 111-119 ENZYME PURIFICATION 53 Hill EA, Hirtenstein MD 1983 Affinity chromatography: its application to industrial scale processes. In: Mizrahi A, Van Wezel AL (eds) Adv Biotechnol Processes. Alan Liss, New York, vol 1:31-66 Hjerten S, Rosengren J , Pahlman S 1974 Hydrophobic interaction chromatography: the synthesis and use of some alkyl and aryl derivatives of agarose. J Chromatogr 101:281-288 Janson JC, Hedman P 1982 Large scale chromatography of proteins.

The toxicity of low concentrations of bicycloheptenone and bicycloheptenols towards yeast and M. ramanniana did not augur well for production of large quantities of optically active materials. * Optical purity of alcohol(s) not determined. 36 ROBERTS Curvularia lunata Cell-free extracts of C. lunata reduced the bicycloheptenone after addition of NADPH. The extent of bicycloheptenone reduction was approximately stoichiometric with added NADPH, and further fractionation of the cell-free extracts indicated the presence of soluble NADP+-linked bicycloheptenone reductase activity.

Academic Press, London and New York, vol 2:71-95 Le MS, Spark LB, Ward PS, Ladwa N 1984a Microbial asparaginase recovery by membrane processes. J Membr Sci. vol 12 Le MS, Spark LB, Ward PS, Ladwa N 1984b The separation of aryl acylamidase by cross flow microfiltration and the significance of enzyme/cell debris interaction. J Membr Sci, vol 12 Lowe CR, Small DAP. Atkinson A 1981 Some preparative and analytical applications of triazine dyes. Int J Biochem 13:33-40 Quirk AV, Woodrow J 1983 Tangential flow filtration-a new method for the separation of bacterial enzymes from cell debris.

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