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外消旋α-甲基苄胺动力学拆分及α-苯乙醇生物合成的氧化还原级联反应

Redox cascade reaction for kinetic resolution of racemic α-methylbenzylamine and biosynthesis of α-phenylethanol.

作者信息

Liu Jinbin, Wang Minyang, Liang Chen, Deng Huaxiang, Yu Xiaohong

机构信息

School of Marine and Bioengineering, Yancheng Institute of Technology, Yancheng, 224051, Jiangsu, China.

Center for Synthetic Biochemistry, Institute of Synthetic Biology, Institutes of Advanced Technologies, Shenzhen, China.

出版信息

Appl Microbiol Biotechnol. 2023 Jan;107(1):125-135. doi: 10.1007/s00253-022-12299-x. Epub 2022 Nov 28.

Abstract

Chiral α-methylbenzylamine and α-phenylethanol are important building blocks for the industrial production of optically active drugs, bioactive compounds. Methods for the simultaneous synthesis of chiral α-methylbenzylamine and α-phenylethanol remain rare. Herein, a biocatalytic redox cascade reaction composed of ω-transaminase, aldo-keto reductase, and glutamate dehydrogenase for chiral α-methylbenzylamine and α-phenylethanol synthesis from racemic α-methylbenzylamine was constructed. A novel ω-transaminase and two different chiral aldo-keto reductases were demonstrated in the cascade reaction. The cosubstrate and redox equivalents were regenerated simultaneously by glutamate dehydrogenase. Using the approach, (R)-α-phenylethanol, (S)-α-phenylethanol, and (R)-α-methylbenzylamine were prepared with excellent stereoselectivity (ee > 99.7%). Furthermore, semi-preparative-scale biotransformation of racemic α-methylbenzylamine was conducted. The production of (R)-α-phenylethanol reached 26.05 mM at 24 h, and the production of (S)-α-phenylethanol reached 25.44 mM at 32 h. Taken together, a novel idea was proposed for the efficient and green synthesis of chiral α-methylbenzylamine and α-phenylethanol, which had great potential for industrial application. KEY POINTS: • Excellent stereoselectivity chiral α-methylbenzylamine and α-phenylethanol were synthesized. • A novel ω-transaminase demonstrated the catalysis toward (S)-α-methylbenzylamine. • Two novel aldo-keto reductases demonstrated the conversion toward acetophenone.

摘要

手性α-甲基苄胺和α-苯乙醇是工业生产光学活性药物、生物活性化合物的重要原料。同时合成手性α-甲基苄胺和α-苯乙醇的方法仍然很少见。在此,构建了一种由ω-转氨酶、醛酮还原酶和谷氨酸脱氢酶组成的生物催化氧化还原级联反应,用于从外消旋α-甲基苄胺合成手性α-甲基苄胺和α-苯乙醇。在级联反应中展示了一种新型的ω-转氨酶和两种不同的手性醛酮还原酶。谷氨酸脱氢酶同时再生了共底物和氧化还原当量。使用该方法,制备了(R)-α-苯乙醇、(S)-α-苯乙醇和(R)-α-甲基苄胺,具有优异的立体选择性(ee>99.7%)。此外,还进行了外消旋α-甲基苄胺的半制备规模生物转化。(R)-α-苯乙醇在24小时时产量达到26.05 mM,(S)-α-苯乙醇在32小时时产量达到25.44 mM。综上所述,提出了一种高效绿色合成手性α-甲基苄胺和α-苯乙醇的新思路,具有很大的工业应用潜力。要点:• 合成了具有优异立体选择性的手性α-甲基苄胺和α-苯乙醇。• 一种新型ω-转氨酶展示了对(S)-α-甲基苄胺的催化作用。• 两种新型醛酮还原酶展示了对苯乙酮的转化作用。

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