Redox Biocatalysis: Fundamentals and Applications
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Paves the way for new industrial applications using redox biocatalysis Increasingly, researchers rely on the use of enzymes to perform redox processes as they search for novel industrial synthetic routes. In order to support and advance their investigations, this book provides a comprehensive and current overview of the use of redox enzymes and enzyme-mediated oxidative processes, with an emphasis on the role of redox enzymes in chemical transformations.
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The authors examine the full range of topics in the field, from basic principles to new and emerging research and applications. Moreover, they explore everything from laboratory-scale procedures to industrial manufacturing.
Redox Biocatalysis begins with a discussion of the biochemical features of redox enzymes as well as cofactors and cofactor regeneration methods. Extensive references serve as a gateway to the growing body of research in the field.
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Redox biocatalysis : fundamentals and applications
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Warden 1 , Carol J. The oxidized and reduced forms are shown, as is the flavin semiquinone. Included are: nitroreduction, enoate reduction, ketoreduction and imine reduction from top to bottom. The asymmetric reduction of enoates, imines and ketones are among the most important reactions in biocatalysis.
Biocatalytic reactions: selected highlights - ScienceDirect
These reactions are routinely conducted using enzymes that use nicotinamide cofactors as reductants. The deazaflavin cofactor F also has electrochemical properties that make it suitable as an alternative to nicotinamide cofactors for use in asymmetric reduction reactions.
However, cofactor F -dependent enzymes remain under-explored as a resource for biocatalysis. The characterized F -dependent reductions that have the potential for adaptation for biocatalysis are discussed, and the enzymes best suited for use in the reduction of oxidized cofactor F to allow cofactor recycling in situ are considered. Finally, the prospects for the use of this cofactor and dependent enzymes as a resource for industrial biocatalysis are discussed. View Full-Text. Keywords: cofactor F ; deazaflavin; oxidoreductase; hydride transfer; hydrogenation; asymmetric synthesis; cofactor biosynthesis cofactor F ; deazaflavin ; oxidoreductase ; hydride transfer ; hydrogenation ; asymmetric synthesis ; cofactor biosynthesis.
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