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立体选择性转氨酶的鉴定及其在手性大体积伯胺的不对称合成中的应用。

Identification of (S)-selective transaminases for the asymmetric synthesis of bulky chiral amines.

机构信息

Department of Biotechnology, Institute of Biochemistry, University of Greifswald, Felix-Hausdorff-Str. 4, D-17489 Greifswald, Germany.

Department of Biochemistry, University of Kassel, Heinrich-Plett-Str. 40, D-34132 Kassel, Germany.

出版信息

Nat Chem. 2016 Nov;8(11):1076-1082. doi: 10.1038/nchem.2578. Epub 2016 Jul 18.

Abstract

The use of transaminases to access pharmaceutically relevant chiral amines is an attractive alternative to transition-metal-catalysed asymmetric chemical synthesis. However, one major challenge is their limited substrate scope. Here we report the creation of highly active and stereoselective transaminases starting from fold class I. The transaminases were developed by extensive protein engineering followed by optimization of the identified motif. The resulting enzymes exhibited up to 8,900-fold higher activity than the starting scaffold and are highly stereoselective (up to >99.9% enantiomeric excess) in the asymmetric synthesis of a set of chiral amines bearing bulky substituents. These enzymes should therefore be suitable for use in the synthesis of a wide array of potential intermediates for pharmaceuticals. We also show that the motif can be engineered into other protein scaffolds with sequence identities as low as 70%, and as such should have a broad impact in the field of biocatalytic synthesis and enzyme engineering.

摘要

使用转氨酶来获得药物相关手性胺是一种有吸引力的替代过渡金属催化不对称化学合成的方法。然而,一个主要的挑战是它们有限的底物范围。在这里,我们报告了从折叠类 I 开始创建高活性和立体选择性转氨酶。通过广泛的蛋白质工程开发了转氨酶,然后对鉴定的基序进行优化。所得酶的活性比起始支架高 8900 倍,在手性胺的不对称合成中具有高度的立体选择性(高达 >99.9%对映体过量),这些手性胺带有体积较大的取代基。因此,这些酶应该适用于合成广泛的潜在药物中间体。我们还表明,该基序可以被工程改造到序列同一性低至 70%的其他蛋白质支架中,因此应该在手性催化合成和酶工程领域产生广泛的影响。

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