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Engineering the activity of amine dehydrogenase in the asymmetric reductive amination of hydroxyl ketones

机译:胺脱氢酶在羟基酮不对称还原胺化反应中的活性

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Chiral amino alcohols are essential structural motifs required in pharmaceutical agents and bioactive natural products. Our previous work explored a series of engineered amine dehydrogenases (AmDHs) derived from amino acid dehydrogenases (AADHs), enabling the asymmetric reductive amination of hydroxyl ketones to chiral amino alcohols. The catalytic efficiency towards γ-hydroxyl ketones, however, is modest in comparison to the activity with vicinal ones. Taking the AmDH from Geobacillus stearothermophilus (GsAmDH) as a template, a rational design campaign was performed with 4-hydroxybutan-2-one serving as the model substrate. Several variants with improved catalytic efficiency were obtained after three rounds of mutagenesis. Compared with the starting enzyme, the conversion of the whole cell reaction containing the engineered mutants was increased from 45% up to 99% in the transformation of 4-hydroxybutan-2-one into (R)-3-amino-1-butanol. The best variant mh174 bearing seven substitutions, showed a 4.2-fold increase in catalytic efficiency (kcat/Km) compared to that of the starting enzyme, while retaining a high enantioselectivity (ee > 99%). In an upscaled reaction (100 mM substrate), mh174 led to 99% conversion of the (R)-product within 36 h and 90% yield. The engineered variants also enable the asymmetric reductive amination of a broad range of hydroxyl ketones, including aliphatic, aromatic, and alicyclic ketones. Overall, this study expands the AmDH toolbox and provides useful variants that may be further developed in the synthesis of high-value chiral amino alcohols.
机译:手性氨基醇结构至关重要主题所需的药剂具有生物活性的天然产物。探索了一系列工程胺脱氢酶(AmDHs)来自氨基酸脱氢酶(AADHs),使不对称的手性羟基酮的还原胺化氨基醇。然而,γ羟基酮是适度的比较与附近的活动。从Geobacillus AmDHstearothermophilus (GsAmDH)作为模板理性的设计执行活动4-hydroxybutan-2-one作为模型衬底。催化效率三个后得到轮诱变。酶,整个细胞的转化反应包含工程突变体是增加从45%到99%的变换4-hydroxybutan-2-one 3-amino-1-butanol (R)。最好的变体mh174轴承7替换,增加4.2倍催化效率(kcat /公里)相比开始的酶,同时保留高选择性(ee > 99%)。反应底物(100毫米),mh174导致99%的转换(R)产品在36 h和90%产量。不对称还原胺化作用广泛羟基酮类,包括脂肪族,芳香族和脂肪酮。研究扩展了AmDH工具箱并提供有用的变异,可能会进一步发展高价值的合成手性氨基酸醇。

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