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In vitro characterization of an enzymatic redox cascade composed of an alcohol dehydrogenase an enoate reductases and a Baeyer–Villiger monooxygenase

机译:酶促氧化还原级联的体外表征该级联反应由乙醇脱氢酶烯醇还原酶和Baeyer-Villiger单加氧酶组成

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摘要

An artificial enzyme cascade composed of an alcohol dehydrogenase, an enoate reductase and a Baeyer–Villiger monooxygenase was investigated in vitro to gain deeper mechanistic insights and understand the assets and drawbacks of this multi-step biocatalysis. Several substrates composed of different structural motifs were examined and provided access to functionalized chiral compounds in high yields (up to >99%) and optical purities (up to >99%). Hence, the applicability of the presented enzymatic cascade was exploited for the synthesis of biorenewable polyesters.
机译:在体外研究了由乙醇脱氢酶,烯酸还原酶和Baeyer-Villiger单加氧酶组成的人工酶级联反应,以获得更深的机械原理并了解这种多步生物催化的资产和缺点。检查了由不同结构基序组成的几种底物,并以高收率(最高> 99%)和光学纯度(最高> 99%)获得了官能化的手性化合物。因此,提出的酶联级联反应的适用性被用于合成生物可再生聚酯。

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