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首页> 外文期刊>ChemCatChem >Cascade Coupling of Ene Reductases with Alcohol Dehydrogenases: Enantioselective Reduction of Prochiral Unsaturated Aldehydes
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Cascade Coupling of Ene Reductases with Alcohol Dehydrogenases: Enantioselective Reduction of Prochiral Unsaturated Aldehydes

机译:用醇脱氢酶的ENE还原酶级联耦合:促幼儿不饱和醛的对映选择性还原

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摘要

The bakers yeast (BY)-mediated reduction of a set of a-substituted derivatives of cinnamaldehyde to give the corresponding saturated alcohols was investigated. Our study demonstrates that the ene reductases of BY (OYE?2 or OYE?3) preferentially reduce the C?C double bond of stereoisomers with the phenyl group trans to the carbonyl group. Moreover, the alcohol dehydrogenases (ADHs) chemoselectively reduce (oxidise) the carbonyl group (hydroxyl group) of saturated aldehydes (alcohols) if the side chain does not contain a heteroatom such as oxygen or sulphur and is longer than an ethyl group. Using isolated OYEs instead of BY, the saturated aldehydes partially lost their optical purity during the biotransformation, even with the in situ substrate feeding product removal (SFPR) technology. This limitation can be overcome by the combination of an isolated ene reductase (OYE?2 or OYE?3) together with an ADH (horse liver alcohol dehydrogenase) in a cascade system which allowed both yields and enantioselectivities to improve.
机译:研究了面包师(通过)介导的肉桂醛的一组替代衍生物的减少,得到相应的饱和醇。我们的研究表明,通过(OYEα2或oye'3)的ENE还原酶优先将立体异构体的C-C双键与苯基转移到羰基。此外,如果侧链不含诸如氧气或硫的杂原子,则醇脱氢酶(ADHS)化学选择性减少(氧化)饱和醛(醇)的羰基(羟基)的羰基(羟基),并且比乙基长。使用隔离的oyes而不是通过,饱和醛在生物转化期间部分地失去了光学纯度,即使是原位衬底供给产品去除(SFPR)技术。可以通过将分离的eNE还原酶(Oyeα2或oyeα3)与ADH(马肝脏醇脱氢酶)组合在级联系统中结合来克服这种限制,其允许产量和对映射性改善。

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