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高效的多酶催化 CDP-胆碱生产由 ATP 供体模块驱动。

Efficient multi-enzyme-catalyzed CDP-choline production driven by an ATP donor module.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Biotechnology and Pharmaceutical Engineering, Nanjing University of Technology, Nanjing, 211816, People's Republic of China.

National Engineering Technique Research Center for Biotechnology, Nanjing, 211816, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2017 Feb;101(4):1409-1417. doi: 10.1007/s00253-016-7874-0. Epub 2016 Oct 13.

Abstract

Cytidine diphosphate choline (CDP-choline) has been applied for treating acute craniocerebral injury and allowing recovery of consciousness after brain surgery. In this study, an acetate kinase (ACK)/acetyl phosphate system was used to supply ATP and combined with Escherichia coli-overexpressed CMP kinase (CMK), NDP kinase (NDK), choline phosphate cytidylyltransferase (CCT), and choline kinase (CKI) to produce CDP-choline from CMP and choline chloride. Within 1 h, 49 mM CDP-choline was produced, for a molar yield of 89.9 and 68.4 % based on CMP and choline chloride, respectively; the utilization efficiency of energy (UEE) was 79.5 %. Acetyl phosphate, sodium acetate, and CTP inhibited the reaction when the concentration exceeded 18.5, 600, and 30 mM, respectively. This inhibition could be overcome by controlling the rate of acetyl phosphate, CMP addition or using KOH instead of NaOH to regulate the pH in fed-batch transformation. After 24 h, the maximum titer was 124.1 ± 2.7 mM, the productivity was 5.1 ± 0.1 mM l h, the molar yield to CMP and choline chloride were 83.8 and 63.7 %, respectively, and the UEE was 58.2 %. This high yield and productivity of CDP-choline through biocatalysis suggest future application at the industrial scale.

摘要

胞苷二磷酸胆碱(CDP-胆碱)已被应用于治疗急性颅脑损伤和脑外科手术后恢复意识。在本研究中,采用乙酸激酶(ACK)/乙酰磷酸系统提供 ATP,并结合大肠杆菌过表达的 CMP 激酶(CMK)、NDP 激酶(NDK)、磷酸胆碱胞苷转移酶(CCT)和胆碱激酶(CKI),从 CMP 和氯化胆碱生产 CDP-胆碱。在 1 小时内,生产了 49 mM CDP-胆碱,基于 CMP 和氯化胆碱的摩尔产率分别为 89.9%和 68.4%;能量利用率(UEE)为 79.5%。当乙酰磷酸、醋酸钠和 CTP 的浓度分别超过 18.5、600 和 30 mM 时,会抑制反应。通过控制乙酰磷酸的速率、CMP 的添加或使用 KOH 代替 NaOH 来调节补料转化中的 pH,可以克服这种抑制。24 小时后,最高浓度为 124.1±2.7 mM,产率为 5.1±0.1 mM·l-h,摩尔产率对 CMP 和氯化胆碱分别为 83.8%和 63.7%,UEE 为 58.2%。通过生物催化获得的 CDP-胆碱的高产量和高生产率表明其未来在工业规模上的应用前景。

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