Abstract <p>The possibility of biotransformation of prochiral heptan-2-one and octan-2-one to enantiomerically pure (2<i>S</i>)-(+)-heptan-2-ol and (2<i>S</i>)-(+)-octan-2-ol using <i>P. crispum</i> cells has been studied, and conditions have been selected to synthesize (2<i>S</i>)-(+)-heptan-2-ol in a high yield of 99% with an enantiomeric excess of 98% ee within 24 h. Transformation of octan-2-one within 72 h gives the corresponding alcohol in 67% yield (74% ee). Conditions for bioreduction of octan-2-one in the presence of various exogenous reducing agents—ethanol (1–5%), isopropanol (1–5%), or glucose (equimolar amount)—have been optimized. The maximum yield and optical purity of (<i>S</i>)-(+)-octan-2-ol, 78% (93% ee), is achieved in 48 h in the presence of 3% ethanol. Reduction of octan-2-one in the presence of isopropanol (1–5%) or an equimolar amount of glucose leads to some increase in the yield and/or optical purity of (2<i>S</i>)-octan-2-ol in comparison with biotransformation in the absence of an exogenous reducing agent.</p>

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Stereoselective Bioreduction of Heptan-2-one and Octan-2-one Catalyzed by Petroselinum Crispum Cells

  • A. R. Chanysheva,
  • N. V. Privalov,
  • V. V. Zorin

摘要

Abstract

The possibility of biotransformation of prochiral heptan-2-one and octan-2-one to enantiomerically pure (2S)-(+)-heptan-2-ol and (2S)-(+)-octan-2-ol using P. crispum cells has been studied, and conditions have been selected to synthesize (2S)-(+)-heptan-2-ol in a high yield of 99% with an enantiomeric excess of 98% ee within 24 h. Transformation of octan-2-one within 72 h gives the corresponding alcohol in 67% yield (74% ee). Conditions for bioreduction of octan-2-one in the presence of various exogenous reducing agents—ethanol (1–5%), isopropanol (1–5%), or glucose (equimolar amount)—have been optimized. The maximum yield and optical purity of (S)-(+)-octan-2-ol, 78% (93% ee), is achieved in 48 h in the presence of 3% ethanol. Reduction of octan-2-one in the presence of isopropanol (1–5%) or an equimolar amount of glucose leads to some increase in the yield and/or optical purity of (2S)-octan-2-ol in comparison with biotransformation in the absence of an exogenous reducing agent.