Stampfer Wolfgang, Kosjek Birgit, Kroutil Wolfgang, Faber Kurt
Department of Chemistry, Organic and Bioorganic Chemistry, University of Graz, Heinrichstrasse 28, A-8010 Graz, Austria.
Biotechnol Bioeng. 2003 Mar 30;81(7):865-9. doi: 10.1002/bit.10540.
The sec-alcohol dehydrogenase activity of whole cells of Rhodococcus ruber DSM 44541 has been employed as an efficient biocatalytic redox system due to the use of acetone and 2-propanol at elevated concentrations for cofactor regeneration in the oxidation and reduction mode, respectively, and external addition of NADH/NAD(+) can be omitted. The operational half-life time of the redox system is 29 hours in 20% v/v acetone and 37 hours in 30% v/v 2-propanol. The Redox system allows the enantioselective oxidation of sec-alcohols and the asymmetric reduction of ketones to furnish (S)-configurated alcohols in high optical purity. The stability of the cells towards further organic solvents was investigated. In addition, the system displays thermostability of up to 60 degrees C and pH stability of up to pH 11. The system represents a simple to handle tool for environmentally benign redox reactions.
由于分别在氧化和还原模式下使用高浓度的丙酮和2-丙醇进行辅因子再生,红球菌DSM 44541全细胞的仲醇脱氢酶活性已被用作一种高效的生物催化氧化还原系统,并且可以省略NADH/NAD(+)的外部添加。该氧化还原系统在20% v/v丙酮中的操作半衰期为29小时,在30% v/v 2-丙醇中的操作半衰期为37小时。该氧化还原系统允许仲醇的对映选择性氧化以及酮的不对称还原,以提供高光学纯度的(S)-构型醇。研究了细胞对其他有机溶剂的稳定性。此外,该系统在高达60摄氏度时显示出热稳定性,在高达pH 11时显示出pH稳定性。该系统是用于环境友好型氧化还原反应的一种易于操作的工具。