化学
烷基化
电泳剂
立体选择性
组合化学
黄素组
辅因子
酶
级联反应
烷基
人工酶
立体化学
催化作用
有机化学
作者
Haigen Fu,Tianzhang Qiao,Jose Miguel Carceller,Samantha N. MacMillan,Todd K. Hyster
标识
DOI:10.26434/chemrxiv-2022-30n98
摘要
Tertiary nitroalkanes and the corresponding α-tertiary amines represent important motifs in bioactive molecules and natural prod-ucts. The C-alkylation of secondary nitroalkanes with electrophiles is a straightforward strategy for constructing tertiary nitroal-kanes, however, controlling the stereoselectivity of this type of reaction remains challenging. Here we report a highly chemo- and stereoselective C-alkylation of nitroalkanes with alkyl halides catalyzed by an engineered flavin-dependent ‘ene’-reductase (ERED). Directed evolution of the old yellow enzyme from Geobacillus kaustophilus provided a triple mutant, GkOYE-G7, capable of synthesizing tertiary nitroalkanes with high yield and enantioselectivity. Mechanistic studies indicate that the excitation of an enzyme-templated charge-transfer complex formed between the substrates and cofactor is responsible for radical initiation. Moreover, a single-enzyme two-mechanism cascade reaction was developed to prepare tertiary nitroalkanes from simple nitroal-kenes, highlighting the potential to use one enzyme for two mechanistically distinct reactions.
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