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通过代谢工程改造的大肠杆菌生产锌原卟啉IX。

Production of zinc protoporphyrin IX by metabolically engineered Escherichia coli.

作者信息

Choi Kyeong Rok, Yu Hye Eun, Lee Sang Yup

机构信息

Metabolic and Biomolecular Engineering National Research Laboratory, Systems Metabolic Engineering and Systems Healthcare Cross-Generation Collaborative Laboratory, Department of Chemical and Biomolecular Engineering (BK21 four), Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.

BioProcess Engineering Research Center, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.

出版信息

Biotechnol Bioeng. 2022 Nov;119(11):3319-3325. doi: 10.1002/bit.28195. Epub 2022 Aug 4.

Abstract

Zinc protoporphyrin IX (ZnPPIX) has been considered as a promising red colorant for food industries as well as an anticancer drug. However, bio-based production of ZnPPIX from a renewable carbon source has not been reported yet. In this study, a fermentation process of the metabolically engineered Escherichia coli HAEM7 strain was optimized for the high-level production of ZnPPIX. To repurpose the HAEM7 strain that was originally developed for the production of heme into a producer of ZnPPIX, the concentrations of iron and zinc in the culture medium were rebalanced. Next, the concentration of zinc in the feeding solution was optimized to improve ZnPPIX production. Moreover, the pH control strategy, induction point, and the strategy of increasing the cell density, which were optimized in the accompanying paper for the high-level production of heme, were applied together. In the optimized fermentation process, the HAEM7 strain produced 2.2 g/L ZnPPIX with a productivity of 39.9 mg/L/h. The fermentation process and strategies reported here will expedite establishing industry-level production of ZnPPIX.

摘要

锌原卟啉IX(ZnPPIX)被认为是食品工业中一种很有前景的红色素以及一种抗癌药物。然而,尚未有关于从可再生碳源生物合成ZnPPIX的报道。在本研究中,对代谢工程改造的大肠杆菌HAEM7菌株的发酵过程进行了优化,以实现ZnPPIX的高水平生产。为了将最初开发用于生产血红素的HAEM7菌株改造为ZnPPIX的生产者,对培养基中铁和锌的浓度进行了重新平衡。接下来,对补料溶液中锌的浓度进行了优化,以提高ZnPPIX的产量。此外,还一并应用了在随附论文中为血红素的高水平生产而优化的pH控制策略、诱导点以及提高细胞密度的策略。在优化的发酵过程中,HAEM7菌株生产了2.2 g/L的ZnPPIX,生产率为39.9 mg/L/h。本文报道的发酵过程和策略将加快建立ZnPPIX的工业规模生产。

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