Biotransformations of substituted phenylethanols and acetophenones by environmental bacteria

Whole cells of hydrocarbon-degrading bacteria, isolated from polluted sediments in the Santos Estuary (Baixada Santista, Sao Paulo, Brazil), were able to catalyse oxidoreduction reactions with various substituted phenylethanols and acetophenones as substrates. A number of substituted phenylethanols...

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Veröffentlicht in:Food technology and biotechnology 2008-10, Vol.46 (4), p.381-387
Hauptverfasser: Kagohara, Edna, Pellizari, Vivian Helena, Comasseto, Joao Valdir, Andrade, Leandro Helgueira, Porto, Andre Luiz Meleiro
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Sprache:eng
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Zusammenfassung:Whole cells of hydrocarbon-degrading bacteria, isolated from polluted sediments in the Santos Estuary (Baixada Santista, Sao Paulo, Brazil), were able to catalyse oxidoreduction reactions with various substituted phenylethanols and acetophenones as substrates. A number of substituted phenylethanols were formed with high (>99 %) enantiomeric excess. The results of microbial oxidation of phenylethanols 2, 3, r7 by Acinetobacter sp. 6.4T and the reduction of acetophenones 1a-6a by Serratia marcescens 5.4T showed that the bacteria used as biocatalysts in this study present significant potential for exploitation in biotechnological processes. The reduction of prochiral acetophenones by Serratia marcescens 3.5T yielded optically active alcohols with 90-99 % enantiomeric excess, and Acinetobacter sp. 6.4T is a potential biocatalyst for the oxidation of alcohols. Key words: oxidoreduction, bacteria, chiral alcohols, biotransformations
ISSN:1330-9862
1334-2606