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Non-enzymatic regeneration of nicotinamide and flavin cofactors for monooxygenase catalysis

机译:烟酰胺和黄素辅助因子的非酶促再生,用于单加氧酶催化

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摘要

Biocatalytic oxygenation chemistry is a rapidly evolving field in which monooxygenases are the tools of choice. Monooxygenases catalyze many industrially important synthetic transformations; however, their use in preparative applications is hampered by their intrinsic requirement for reducing equivalents. As a result, nonenzymatic strategies - where the reducing equivalents are introduced directly into the catalytic cycle - are being developed to supersede the well-established enzymatic NAD(P)H regeneration systems currently in use. In this review we summarize and evaluate recent achievements in this area.
机译:生物催化氧化化学是一个快速发展的领域,其中单加氧酶是选择的工具。单加氧酶催化许多工业上重要的合成转化。然而,它们在制备应用中的使用因其减少当量的内在要求而受到阻碍。结果,正在开发将还原当量直接引入催化循环的非酶策略,以取代目前使用的完善的酶NAD(P)H再生系统。在这篇综述中,我们总结并评估了该领域的最新成就。

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