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Bioreactor systems for the production of optically active amino acids and alcohols

机译:用于生产旋光氨基酸和醇的生物反应器系统

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摘要

Industrial enzyme catalytic reactions for the production of useful optically active compounds have been developed. The first example is a unique process for the production of D-phydroxyphenylglycine ( D- HPG) from D,L-5-p-hydroxyphenylhydantoin. This process involves two immobilized enzyme processes, hydantoinase and N-carbamoyl- D- amino acid amidohydrolase (DCase). A thermophilic bacterium producing thermostable hydantoinase and a mesophilic bacterium producing DCase were isolated, and the thermostability of the latter enzyme was improved by a protein-engineering technique. Both enzymes could be reused in long-term repeated batch reactions as immobilized enzymes for industrial production. The second example is an enzymatic reduction system for the production of optically active alcohols from the corresponding carbonyl compounds. Effective production of ethyl (S)-4-chloro-3-hydroxybutyrate was achieved with high productivity (350 g/L, > 99% ee) by constructing the recombinant Escherichia coli overproducing both carbonyl reductase (S1) and the cofactor-regenerating enzyme, glucose dehydrogenase. We also found various types of reducing enzyme that are useful for the production of various compounds.
机译:已经开发了用于生产有用的光学活性化合物的工业酶催化反应。第一个实例是由D,L-5-对羟基苯基乙内酰脲生产D-对羟基苯基甘氨酸(D-HPG)的独特方法。该过程涉及两个固定的酶过程,乙内酰脲酶和N-氨基甲酰基-D-氨基酸酰胺水解酶(DCase)。分离出产生热稳定的乙内酰脲酶的嗜热细菌和产生DCase的中温细菌,并通过蛋白质工程技术提高了后者的热稳定性。两种酶都可以在长期重复的批量反应中作为固定化酶用于工业生产。第二个实例是用于由相应的羰基化合物生产旋光醇的酶促还原系统。通过构建过量生产羰基还原酶(S1)和辅因子再生酶的重组大肠杆菌,可以高效生产(S)-4-氯-3-羟基丁酸乙酯(350 g / L,> 99%ee) ,葡萄糖脱氢酶。我们还发现了可用于生产各种化合物的各种类型的还原酶。

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