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首页> 外文期刊>Angewandte Chemie >Recombinant Cyanobacteria for the Asymmetric Reduction of C=C Bonds Fueled by the Biocatalytic Oxidation of Water
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Recombinant Cyanobacteria for the Asymmetric Reduction of C=C Bonds Fueled by the Biocatalytic Oxidation of Water

机译:重组蓝细菌通过水的生物催化氧化促进C = C键的不对称还原

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摘要

A recombinant enoate reductase was expressed in cyanobacteria and used for the light-catalyzed, enantioselective reduction of C=C bonds. The coupling of oxidoreductases to natural photosynthesis allows asymmetric syntheses fueled by the oxidation of water. Bypassing the addition of sacrificial cosubstrates as electron donors significantly improves the atom efficiency and avoids the formation of undesired side products. Crucial factors for product formation are the availability of NADPH and the amount of active enzyme in the cells. The efficiency of the reaction is comparable to typical whole-cell biotransformations in E.coli. Under optimized conditions, a solution of 100 mg prochiral 2-methylmaleimide was reduced to optically pure 2-methylsuccinimide (99% ee, 80% yield of isolated product). High product yields and excellent optical purities demonstrate the synthetic usefulness of light-catalyzed whole-cell biotransformations using recombinant cyanobacteria.
机译:重组的烯酸还原酶在蓝细菌中表达,并用于光催化的C = C键的对映选择性还原。氧化还原酶与自然光合作用的耦合允许水氧化为不对称合成提供动力。绕过牺牲性共衬底的添加作为电子给体,可显着提高原子效率,并避免形成不良副产物。产物形成的关键因素是NADPH的可用性和细胞中活性酶的量。该反应的效率可与大肠杆菌中典型的全细胞生物转化相媲美。在最佳条件下,将100 mg前手性2-甲基马来酰亚胺溶液还原为光学纯的2-甲基琥珀酰亚胺(99%ee,分离产物收率80%)。高产品收率和出色的光学纯度证明了使用重组蓝细菌进行光催化全细胞生物转化的合成有用性。

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