生物催化
盐单胞菌属
胺化
化学
组合化学
还原胺化
有机化学
催化作用
反应机理
生物化学
16S核糖体RNA
基因
作者
Eimear Hegarty,Francesca Paradisi
出处
期刊:Chimia
[Swiss Chemical Society]
日期:2020-11-25
卷期号:74 (11): 890-890
被引量:9
标识
DOI:10.2533/chimia.2020.890
摘要
Significant progress has been made in establishing transaminases as robust biocatalysts for the green and scalable synthesis of a diverse range of chiral amines. However, very few examples on the amination of small cyclic ketones have been reported. Cyclic ketones are particularly challenging for transaminase enzymes because they do not display the well-defined small and large substituent areas that are characteristic for the bio- catalytic mechanism. In this work, we exploited the broad substrate scope of the (S)-selective transaminase from Halomonas elongata (HeWT) to develop an efficient biocatalytic system in continuous flow to generate a range of small cyclic amines which feature very often in pharmaceuticals and agrochemicals. [3] Tetrahydrofuran-3-one and other challenging prochiral ketones were rapidly (5-45 min) transformed to their corresponding amines with excellent molar conversion (94-99%) and moderate to excellent ee.
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