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具有双醇脱氢酶和胺脱氢酶活性的氧化还原酶的生成。

Generation of Oxidoreductases with Dual Alcohol Dehydrogenase and Amine Dehydrogenase Activity.

机构信息

Van't Hoff Institute for Molecular Sciences, HIMS-Biocat, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands.

出版信息

Chemistry. 2021 Feb 15;27(10):3315-3325. doi: 10.1002/chem.202003140. Epub 2020 Dec 9.

Abstract

The l-lysine-ϵ-dehydrogenase (LysEDH) from Geobacillus stearothermophilus naturally catalyzes the oxidative deamination of the ϵ-amino group of l-lysine. We previously engineered this enzyme to create amine dehydrogenase (AmDH) variants that possess a new hydrophobic cavity in their active site such that aromatic ketones can bind and be converted into α-chiral amines with excellent enantioselectivity. We also recently observed that LysEDH was capable of reducing aromatic aldehydes into primary alcohols. Herein, we harnessed the promiscuous alcohol dehydrogenase (ADH) activity of LysEDH to create new variants that exhibited enhanced catalytic activity for the reduction of substituted benzaldehydes and arylaliphatic aldehydes to primary alcohols. Notably, these novel engineered dehydrogenases also catalyzed the reductive amination of a variety of aldehydes and ketones with excellent enantioselectivity, thus exhibiting a dual AmDH/ADH activity. We envisioned that the catalytic bi-functionality of these enzymes could be applied for the direct conversion of alcohols into amines. As a proof-of-principle, we performed an unprecedented one-pot "hydrogen-borrowing" cascade to convert benzyl alcohol to benzylamine using a single enzyme. Conducting the same biocatalytic cascade in the presence of cofactor recycling enzymes (i.e., NADH-oxidase and formate dehydrogenase) increased the reaction yields. In summary, this work provides the first examples of enzymes showing "alcohol aminase" activity.

摘要

来自嗜热脂肪地芽孢杆菌的 l-赖氨酸-ε-脱氢酶(LysEDH)自然催化 l-赖氨酸的ε-氨基的氧化脱氨。我们之前对该酶进行了工程改造,创造了具有新疏水性空腔的胺脱氢酶(AmDH)变体,使芳香酮能够结合并转化为具有优异对映选择性的α-手性胺。我们最近还观察到 LysEDH 能够将芳香醛还原为伯醇。在此,我们利用 LysEDH 的混杂醇脱氢酶(ADH)活性创造了新的变体,这些变体对取代苯甲醛和芳基脂肪醛还原为伯醇的催化活性增强。值得注意的是,这些新型工程化的脱氢酶还催化各种醛和酮的还原胺化,具有优异的对映选择性,因此表现出双重 AmDH/ADH 活性。我们设想这些酶的催化多功能性可用于直接将醇转化为胺。作为原理验证,我们使用一种酶进行了前所未有的一锅“借氢”级联反应,将苄醇转化为苄胺。在存在辅因子循环酶(即 NADH-氧化酶和甲酸脱氢酶)的情况下进行相同的生物催化级联反应,提高了反应产率。总之,这项工作提供了首例表现出“醇胺酶”活性的酶的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2869/7898336/a6428a703c07/CHEM-27-3315-g001.jpg

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