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NAD(P)H-Independent Asymmetric C=C Bond Reduction Catalyzed by Ene Reductases by Using Artificial Co-substrates as the Hydrogen Donor

机译:人工共底物作为氢供体,通过烯还原酶催化NAD(P)H独立的不对称C = C键还原

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摘要

To develop a nicotinamide-independent single flavoenzyme system for the asymmetric bioreduction of C=C bonds, four types of hydrogen donor, encompassing more than 50 candidates, were investigated. Six highly potent, cheap, and commercially available co-substrates were identified that (under the optimized conditions) resulted in conversions and enantioselectivities comparable with, or even superior to, those obtained with traditional two-enzyme nicotinamide adenine dinucleotide phosphate (NAD(P)H)-recycling systems.
机译:为了开发不依赖烟酰胺的单一黄素酶系统以实现C = C键的不对称生物还原,研究了四种类型的氢供体,其中包括50多种候选物。鉴定出六种高效,廉价且可商购的共底物(在优化条件下),其转化和对映选择性可与甚至优于传统的两酶烟酰胺腺嘌呤二核苷酸磷酸酯(NAD(P))相比。 H)-回收系统。

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