Better than nature

Nicotinamide biomimetics that outperform natural coenzymes

Journal Article (2016)
Author(s)

T Knaus (Manchester Institute of Biotechnology, Manchester)

Caroline Paul (TU Delft - BT/Biocatalysis)

CW Levy (Manchester Institute of Biotechnology, Manchester)

S De Vries (TU Delft - BT/Biocatalysis)

FG Mutti (Manchester Institute of Biotechnology, Manchester)

F. Hollmann (TU Delft - BT/Biocatalysis)

NS Scrutton (Manchester Institute of Biotechnology, Manchester)

Research Group
BT/Biocatalysis
Copyright
© 2016 T Knaus, C.E. Paul, CW Levy, S. de Vries, FG Mutti, F. Hollmann, NS Scrutton
DOI related publication
https://doi.org/10.1021/jacs.5b12252
More Info
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Publication Year
2016
Language
English
Copyright
© 2016 T Knaus, C.E. Paul, CW Levy, S. de Vries, FG Mutti, F. Hollmann, NS Scrutton
Research Group
BT/Biocatalysis
Issue number
3
Volume number
138
Pages (from-to)
1033-1039
Reuse Rights

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Abstract

The search for affordable, green biocatalytic processes is a challenge for chemicals manufacture. Redox biotransformations are potentially attractive, but they rely on
unstable and expensive nicotinamide coenzymes that have prevented their widespread exploitation. Stoichiometric use of natural coenzymes is not viable economically, and the instability of these molecules hinders catalytic processes that employ coenzyme recycling. Here, we investigate the efficiency of man-made synthetic biomimetics of the natural coenzymes NAD(P)H in redox biocatalysis. Extensive studies with a range of oxidoreductases belonging to the “ene” reductase family show that these biomimetics are excellent analogues of the natural coenzymes, revealed also in crystal structures of the ene reductase XenA with selected biomimetics. In selected cases, these biomimetics outperform the natural coenzymes. “Better-than-Nature” biomimetics should find widespread application in fine and specialty chemicals production by harnessing the power of high stereo-, regio-, and chemoselective redox biocatalysts and enabling reactions under mild conditions at low cost.