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多酶级联反应高效拆分 dl-泛内酯为 d-泛内酯。

Multi-Enzymatic Cascade for Efficient Deracemization of dl-Pantolactone into d-Pantolactone.

机构信息

Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Molecules. 2023 Jul 10;28(14):5308. doi: 10.3390/molecules28145308.

Abstract

d-pantolactone is an intermediate in the synthesis of d-pantothenic acid, which is known as vitamin B. The commercial synthesis of d-pantolactone is carried out through the selective resolution of dl-pantolactone catalyzed by lactone hydrolase. In contrast to a kinetic resolution approach, the deracemization of dl-pantolactone is a simpler, greener, and more sustainable way to obtain d-pantolactone with high optical purity. Herein, an efficient three-enzyme cascade was developed for the deracemization of dl-pantolactone, using l-pantolactone dehydrogenase from (LPLDH), conjugated polyketone reductase from (CPR), and glucose dehydrogenase from (GDH). The LPLDH was used to catalyze the dehydrogenated l-pantolactone into ketopantolactone; the CPR was used to further catalyze the ketopantolactone into d-pantolactone; and glucose dehydrogenase together with glucose fulfilled the function of coenzyme regeneration. All three enzymes were co-expressed in strain BL21(DE3), which served as the whole-cell biocatalyst. Under optimized conditions, 36 h deracemization of 1.25 M dl-pantolactone d-pantolactone led to an value of 98.6%, corresponding to productivity of 107.7 g/(l·d).

摘要

D-泛酸内酯是 D-泛酸的合成中间体,D-泛酸又称维生素 B。D-泛酸内酯的商业合成是通过内酯水解酶催化的 dl-泛酸内酯的选择性拆分来实现的。与动力学拆分方法相比,dl-泛酸内酯的外消旋化是获得具有高光学纯度的 D-泛酸内酯的更简单、更绿色、更可持续的方法。在此,开发了一种有效的三酶级联反应,用于 dl-泛酸内酯的外消旋化,使用来自 (LPLDH)的 L-泛酸内酯脱氢酶、来自 (CPR)的共轭聚酮还原酶和来自 (GDH)的葡萄糖脱氢酶。LPLDH 用于催化脱氢的 L-泛酸内酯生成酮代泛内酯;CPR 用于进一步催化酮代泛内酯生成 D-泛酸内酯;葡萄糖脱氢酶与葡萄糖一起完成辅酶再生的功能。所有三种酶都在 菌株 BL21(DE3)中共同表达,作为全细胞生物催化剂。在优化条件下,1.25 M dl-泛酸内酯的 36 小时外消旋化导致 值为 98.6%,对应于 107.7 g/(l·d)的产率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/444f/10384591/2b514924293f/molecules-28-05308-sch001.jpg

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