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在高底物负荷下,使用环保型离子液体作为共溶剂,通过重组大肠杆菌细胞高效不对称合成(R)-3-羟基丁酸乙酯。

Efficient asymmetric synthesis of ethyl (R)-3-hydroxybutyrate by recombinant Escherichia coli cells under high substrate loading using eco-friendly ionic liquids as cosolvent.

机构信息

Key Laboratory of Pharmaceutical Engineering of Zhejiang Province, College of Pharmaceutical Science, Zhejiang University of Technology, Hangzhou, 310014, People's Republic of China.

Key Laboratory for Green Pharmaceutical Technologies and Related Equipment of Ministry of Education, Zhejiang University of Technology, Hangzhou, 310014, People's Republic of China.

出版信息

Bioprocess Biosyst Eng. 2023 Sep;46(9):1293-1302. doi: 10.1007/s00449-023-02897-y. Epub 2023 Jul 2.

DOI:10.1007/s00449-023-02897-y
PMID:37393574
Abstract

Ionic liquids (ILs) which synthesized from bio-renewable materials have recently attracted much attention for their applications in biocatalysis. Ethyl (R)-3-hydroxybutyrate ((R)-EHB) as a versatile chiral intermediate is of great interest in pharmaceutical synthesis. This study focuses on evaluating the performances of choline chloride (ChCl)-based and tetramethylammonium (TMA)-based neoteric ILs in the efficient synthesis of (R)-EHB via the bioreduction of ethyl acetoacetate (EAA) at high substrate loading by recombinant Escherichia coli cells. It was found that choline chloride/glutathione (ChCl/GSH, molar ratio 1:1) and tetramethylammonium/cysteine ([TMA][Cys], molar ratio 1:1) as eco-friendly ILs not only enhanced the solubility of water-insoluble EAA in the aqueous buffer system, but also appropriately improved the membrane permeability of recombinant E. coli cells, thus boosting catalytic reduction efficiency of EAA to (R)-EHB. In the developed ChCl/GSH- or [TMA][Cys]-buffer systems, the space-time yields of (R)-EHB achieved 754.9 g/L/d and 726.3 g/L/d, respectively, which are much higher than neat aqueous buffer system (537.2 g/L/d space-time yield). Meanwhile, positive results have also been demonstrated in the bioreduction of other prochiral ketones in the established IL-buffer systems. This work exhibits an efficient bioprocess for (R)-EHB synthesis under 325 g/L (2.5 M) substrate loading, and provides promising ChCl/GSH- and [TMA][Cys]-buffer systems employed in the biocatalysis for hydrophobic substrate.

摘要

离子液体(ILs)是由生物可再生材料合成的,因其在生物催化中的应用而受到广泛关注。(R)-3-羟基丁酸乙酯((R)-EHB)作为一种多功能手性中间体,在药物合成中具有重要的应用价值。本研究重点评价了氯化胆碱(ChCl)和四甲基铵(TMA)基新型离子液体在高底物浓度下通过重组大肠杆菌细胞生物还原乙酰乙酸乙酯(EAA)高效合成(R)-EHB 的性能。结果发现,ChCl/谷胱甘肽(ChCl/GSH,摩尔比 1:1)和 TMA/半胱氨酸([TMA][Cys],摩尔比 1:1)作为环保型离子液体不仅提高了水不溶性 EAA 在水缓冲体系中的溶解度,而且适当提高了重组大肠杆菌细胞的膜通透性,从而提高了 EAA 催化还原为(R)-EHB 的效率。在开发的 ChCl/GSH 或[TMA][Cys]-缓冲体系中,(R)-EHB 的时空产率分别达到 754.9 g/L/d 和 726.3 g/L/d,远高于纯水溶液缓冲体系(537.2 g/L/d 的时空产率)。同时,在建立的离子液体缓冲体系中,其他前手性酮的生物还原也得到了正向结果。本工作在 325 g/L(2.5 M)底物浓度下展示了一种高效的(R)-EHB 合成生物工艺,并提供了有前景的用于疏水性底物生物催化的 ChCl/GSH 和[TMA][Cys]-缓冲体系。

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