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Organic-inorganic nanocrystal reductase to promote green asymmetric synthesis
Kotchakorn T Sriwong1, Afifa Ayu Koesoema1, Tomoko Matsuda1
1Department of Life Science and Technology, School of Life Science and Technology, Tokyo Institute of Technology 4259 Nagatsuta-cho, Midori-ku Yokohama 226-8501 Japan tmatsuda@bio.titech.ac.jp +81-45-924-5757 +81-45-924-5757.
Abstract:
An acetophenone reductase from Geotrichum candidum (GcAPRD) was immobilized by the organic-inorganic nanocrystal method. The GcAPRD nanocrystal presented improved stability and recyclability compared with those of the free GcAPRD. Moreover, the GcAPRD nanocrystal reduced broad kinds of ketones with excellent enantioselectivities to produce beneficial chiral alcohols such as (S)-1-(3',4'-dichlorophenyl)ethanol with >99% yield and >99% ee. The robust and versatile properties of the GcAPRD nanocrystal demonstrated an approach to promote green asymmetric synthesis and sustainable chemistry.
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