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Amination of ω-Functionalized Aliphatic Primary Alcohols by a Biocatalytic Oxidation–Transamination Cascade

机译:通过生物催化氧化-氨基转移级联胺化ω-官能化脂肪族伯醇

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摘要

Amination of non-activated aliphatic fatty alcohols to the corresponding primary amines was achieved through a five-enzyme cascade reaction by coupling a long-chain alcohol oxidase from Aspergillus fumigatus (LCAO_Af) with a ω-transaminase from Chromobacterium violaceum (ω-TA_Cv). The alcohol was oxidized at the expense of molecular oxygen to yield the corresponding aldehyde, which was subsequently aminated by the PLP-dependent ω-TA to yield the final primary amine product. The overall cascade was optimized with respect to pH, O2 pressure, substrate concentration, decomposition of H2O2 (derived from alcohol oxidation), NADH regeneration, and biocatalyst ratio. The substrate scope of this concept was investigated under optimized conditions by using terminally functionalized C4–C11 fatty primary alcohols bearing halogen, alkyne, amino, hydroxy, thiol, and nitrile groups.
机译:通过将烟曲霉的长链醇氧化酶(LCAO_Af)与紫色杆菌的ω-转氨酶(ω-TA_Cv)偶联,通过五酶级联反应将未活化的脂肪族脂肪醇胺化为相应的伯胺。以分子氧为代价氧化该醇以产生相应的醛,随后将其用依赖于PLP的ω-TA胺化以生成最终的伯胺产物。在pH,O2压力,底物浓度,H2O2分解(源自醇氧化),NADH再生和生物催化剂比例方面优化了整个级联反应。通过使用带有卤素,炔烃,氨基,羟基,硫醇和腈基的末端官能化C4-C11脂肪伯醇,在最佳条件下研究了该概念的底物范围。

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