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Conversion of alcohols to enantiopure amines through dual-enzyme hydrogen-borrowing cascades

机译:通过双酶氢键级联反应将醇转化为对映体纯胺

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摘要

α-Chiral amines are key intermediates for the synthesis of a plethora of chemical compounds at industrial scale. We present a biocatalytic hydrogen-borrowing amination of primary and secondary alcohols that allows for the efficient and environmentally benign production of enantiopure amines. The method relies on a combination of two enzymes: an alcohol dehydrogenase (from Aromatoleum sp., Lactobacillus sp., or Bacillus sp.) operating in tandem with an amine dehydrogenase (engineered from Bacillus sp.) to aminate a structurally diverse range of aromatic and aliphatic alcohols, yielding up to 96% conversion and 99% enantiomeric excess. Primary alcohols were aminated with high conversion (up to 99%). This redox self-sufficient cascade possesses high atom efficiency, sourcing nitrogen from ammonium and generating water as the sole by-product.
机译:α-手性胺是在工业规模上合成大量化合物的关键中间体。我们介绍了伯醇和仲醇的生物催化氢借入胺化反应,可实现对映纯胺的高效和环境友好的生产。该方法依靠两种酶的组合:醇脱氢酶(来自芳香杆菌属,乳杆菌属或芽孢杆菌属)与胺脱氢酶(由芽孢杆菌属工程制得)串联运行,以胺化结构多样的芳香族化合物。和脂肪醇,转化率高达96%,对映异构体过量99%。伯醇胺化率高(高达99%)。这种氧化还原自给自足的级联具有高原子效率,可从铵中吸收氮并产生水作为唯一的副产物。

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