多酶级联反应高效合成L-threo-苯基丝氨酸
Multi-enzyme cascade reaction for efficient synthesis of L-threo-phenylserine
L-苏氨酸转醛酶可非对映选择性地催化L-苏氨酸和醛生成β-羟基-α-氨基酸。在本研究中,通过基因组挖掘从Pseudomonas sp.中鉴定获得一种新的L-苏氨酸转醛酶(PmLTTA)。PmLTTA在催化L-苏氨酸和苯甲醛合成L-苏-苯基丝氨酸的反应中,表现出较高活性和非对映选择性。然而,苯甲醛和乙醛的毒性以及动力学/热力学控制的存在,影响了PmLTTA的催化效率和进一步应用。为解决这些问题,通过引入乙醇脱氢酶(ADH)去除副产物乙醛,然后引入羧酸还原酶(CAR)来减轻底物苯甲醛的抑制,最后构建了包含CAR、PmLTTA、ADH和葡萄糖脱氢酶(GDH)的多酶级联反应。探索了级联反应的影响因素,在最优条件下转化率和de值分别达到57.1%和95.3%。本研究为利用工业副产物合成手性L-苏-苯基丝氨酸提供了一种绿色高效的途径,并为多酶级联反应的优化提供了指导。
L-Threonine transaldolase could catalyze the transaldolation of L-threonine and aldehyde to generate β-hydroxy-α-amino acids with high diastereoselectivity. A novel L-threonine transaldolase (PmLTTA) was identified from Pseudomonas sp. through genome mining. PmLTTA exhibited high activity and diastereoselectivity in the synthesis of L-threo-phenylserine from L-threonine and benzaldehyde, However, the application of PmLTTA was impeded by the low conversion ratio and variable diastereoselectivity, which were caused by the toxicity of aldehydes and kinetic/thermodynamic controls in the transaldolation reaction. To solve these issues, alcohol dehydrogenase was used to remove the by-product acetaldehyde, and then carboxylic acid reductase was introduced to alleviate the inhibition of benzaldehyde. Finally, a multi-enzyme cascade reaction, comprising of PmLTTA, carboxylic acid reductase, alcohol dehydrogenase and glucose dehydrogenase, was constructed to prepare L-threo-phenylserine from cheap benzoic acid, in which alleviated inhibition of aldehydes and desirable diastereoselectivity were achieved. Under the optimized conditions, the conversion ratio of 57.1% and de value of 95.3% were reached. This study provides an efficient and green approach for the synthesis of chiral L-threo-phenylserine from industrial byproduct, and provides guidance for the development of cascade reactions influenced by the toxic intermediates and complicated kinetic/thermodynamic controls.
倪晔、许国超、修元松
生物工程学生物化学
L-苏氨酸转醛酶L-苏-苯基丝氨酸反应优化级联反应非对映选择性
L-Thronine transaldolaseL-threo-phenylserinereaction optimizationcascade reactiondiastereoselectivity
倪晔,许国超,修元松.多酶级联反应高效合成L-threo-苯基丝氨酸[EB/OL].(2022-04-06)[2025-08-18].http://www.paper.edu.cn/releasepaper/content/202204-76.点此复制
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