Pathway engineering for high-yield production of lutein in Escherichia coli

大肠杆菌 产量(工程) 叶黄素 生产(经济) 合成生物学 生化工程 计算机科学 化学 食品科学 计算生物学 生物化学 生物 工程类 材料科学 类胡萝卜素 宏观经济学 经济 基因 冶金
作者
Miho Takemura,Akiko Kubo,Asuka Watanabe,Hanayo Sakuno,Yuka Minobe,Takehiko Sahara,Masahiro Murata,Michihiro Araki,Hisashi Harada,Yoshinobu Terada,Katsuro Yaoi,Kohji Ohdan,Norihiko Misawa
出处
期刊:Synthetic biology [Oxford University Press]
卷期号:6 (1) 被引量:16
标识
DOI:10.1093/synbio/ysab012
摘要

Lutein is an industrially important carotenoid pigment, which is essential for photoprotection and photosynthesis in plants. Lutein is crucial for maintaining human health due to its protective ability from ocular diseases. However, its pathway engineering research has scarcely been performed for microbial production using heterologous hosts, such as Escherichia coli, since the engineering of multiple genes is required. These genes, which include tricky key carotenoid biosynthesis genes typically derived from plants, encode two sorts of cyclases (lycopene ε- and β-cyclase) and cytochrome P450 CYP97C. In this study, upstream genes effective for the increase in carotenoid amounts, such as isopentenyl diphosphate isomerase (IDI) gene, were integrated into the E. coli JM101 (DE3) genome. The most efficient set of the key genes (MpLCYe, MpLCYb and MpCYP97C) was selected from among the corresponding genes derived from various plant (or bacterial) species using E. coli that had accumulated carotenoid substrates. Furthermore, to optimize the production of lutein in E. coli, we introduced several sorts of plasmids that contained some of the multiple genes into the genome-inserted strain and compared lutein productivity. Finally, we achieved 11 mg/l as lutein yield using a mini jar. Here, the high-yield production of lutein was successfully performed using E. coli through approaches of pathway engineering. The findings obtained here should be a base reference for substantial lutein production with microorganisms in the future.

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