Highly efficient synthesis of the chiral ACE inhibitor intermediate (R)-2-hydroxy-4-phenylbutyrate ethyl ester via engineered bi-enzyme coupled systems.

IF 4.3 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Yanmei Dai, Jinmei Wang, Zijuan Tao, Liangli Luo, Changshun Huang, Bo Liu, Hanbing Shi, Lan Tang, Zhimin Ou
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Abstract

(R)-2-Hydroxy-4-phenylbutyric acid ethyl ester ((R)-HPBE) is an essential chiral intermediate in the synthesis of angiotensin-converting enzyme (ACE) inhibitors. Its production involves the highly selective asymmetric reduction of ethyl 2-oxo-4-phenylbutyrate (OPBE), catalyzed by carbonyl reductase (CpCR), with efficient cofactor regeneration playing a crucial role. In this study, an in-situ coenzyme regeneration system was developed by coupling carbonyl reductase (CpCR) with glucose dehydrogenase (GDH), resulting in the construction of five recombinant strains capable of NADPH regeneration. Among these, the recombinant strain E. coli BL21-pETDuet-1-GDH-L-CpCR, where CpCR is fused to the C-terminus of GDH, demonstrated the highest catalytic activity. This strain exhibited an enzyme activity of 69.78 U/mg and achieved a conversion rate of 98.3%, with an enantiomeric excess (ee) of 99.9% during the conversion of 30 mM OPBE to (R)-HPBE. High-density fermentation further enhanced enzyme yield, achieving an enzyme activity of 1960 U/mL in the fermentation broth, which is 16.2 times higher than the volumetric activity obtained from shake flask fermentation. Additionally, the implementation of a substrate feeding strategy enabled continuous processing, allowing the strain to efficiently convert a final OPBE concentration of 920 mM, producing 912 mM of (R)-HPBE. These findings highlight the system's improved catalytic efficiency, stability, and scalability, making it highly suitable for industrial-scale biocatalytic production.

通过工程化双酶偶联系统高效合成手性 ACE 抑制剂中间体 (R)-2- 羟基-4-苯基丁酸乙酯。
(R)-2-羟基-4-苯基丁酸乙酯((R)-HPBE)是合成血管紧张素转换酶(ACE)抑制剂的重要手性中间体。它的生产涉及 2-氧代-4-苯基丁酸乙酯(OPBE)在羰基还原酶(CpCR)催化下的高选择性不对称还原,高效的辅助因子再生起着至关重要的作用。本研究通过将羰基还原酶(CpCR)与葡萄糖脱氢酶(GDH)耦合,开发了一种原位辅酶再生系统,构建了五种能够进行 NADPH 再生的重组菌株。其中,大肠杆菌 BL21-pETDuet-1-GDH-L-CpCR 重组菌株(CpCR 与 GDH 的 C 端融合)的催化活性最高。在将 30 mM OPBE 转化为 (R)-HPBE 的过程中,该菌株的酶活性为 69.78 U/mg ,转化率为 98.3%,对映体过量(ee)为 99.9%。高密度发酵进一步提高了酶产量,发酵液中的酶活达到 1960 U/mL,是摇瓶发酵体积酶活的 16.2 倍。此外,底物进料策略的实施实现了连续处理,使菌株能够有效转化最终浓度为 920 mM 的 OPBE,产生 912 mM 的 (R)-HPBE。这些发现凸显了该系统催化效率、稳定性和可扩展性的提高,使其非常适合工业规模的生物催化生产。
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来源期刊
Bioresources and Bioprocessing
Bioresources and Bioprocessing BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
8.70%
发文量
118
审稿时长
13 weeks
期刊介绍: Bioresources and Bioprocessing (BIOB) is a peer-reviewed open access journal published under the brand SpringerOpen. BIOB aims at providing an international academic platform for exchanging views on and promoting research to support bioresource development, processing and utilization in a sustainable manner. As an application-oriented research journal, BIOB covers not only the application and management of bioresource technology but also the design and development of bioprocesses that will lead to new and sustainable production processes. BIOB publishes original and review articles on most topics relating to bioresource and bioprocess engineering, including: -Biochemical and microbiological engineering -Biocatalysis and biotransformation -Biosynthesis and metabolic engineering -Bioprocess and biosystems engineering -Bioenergy and biorefinery -Cell culture and biomedical engineering -Food, agricultural and marine biotechnology -Bioseparation and biopurification engineering -Bioremediation and environmental biotechnology
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