Engineering Escherichia coli via introduction of the isopentenol utilization pathway to effectively produce geranyllinalool.

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-10-24 DOI:10.1186/s12934-024-02563-2
Jin Chang, Xinduo Wei, Deyu Liu, Qian Li, Chong Li, Jianguo Zhao, Likun Cheng, Guanglu Wang
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Abstract

Background: Geranyllinalool, a natural diterpenoid found in plants, has a floral and woody aroma, making it valuable in flavors and fragrances. Currently, its synthesis primarily depends on chemical methods, which are environmentally harmful and economically unsustainable. Microbial synthesis through metabolic engineering has shown potential for producing geranyllinalool. However, achieving efficient synthesis remains challenging owing to the limited availability of terpenoid precursors in microorganisms. Thus, an artificial isopentenol utilization pathway (IUP) was constructed and introduced in Escherichia coli to enhance precursor availability and further improve terpenoid synthesis.

Results: We first constructed an artificial IUP in E. coli to enhance the supply of precursor geranylgeranyl diphosphate (GGPP) and then screened geranyllinalool synthases from plants to achieve efficient synthesis of geranyllinalool (274.78 ± 2.48 mg/L). To further improve geranyllinalool synthesis, we optimized various cultivation factors, including carbon source, IPTG concentration, and prenol addition and obtained 447.51 ± 6.92 mg/L of geranyllinalool after 72 h of shaken flask fermentation. Moreover, a scaled-up production in a 5-L fermenter was investigated to give 2.06 g/L of geranyllinalool through fed-batch fermentation. To the best of our knowledge, this is the highest reported titer so far.

Conclusions: Efficient synthesis of geranyllinalool in E. coli can be achieved through a two-step pathway and optimization of culture conditions. The findings of this study provide valuable insights into the production of other terpenoids in E. coli.

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通过引入异戊烯醇利用途径改造大肠杆菌,以有效生产香叶醇。
背景:香叶基芳樟醇是一种存在于植物中的天然二萜类化合物,具有花香和木香,因此在香精和香料中很有价值。目前,其合成主要依赖于化学方法,这些方法对环境有害,在经济上也不可持续。通过代谢工程进行微生物合成已显示出生产香叶醇的潜力。然而,由于微生物中的萜类前体有限,实现高效合成仍具有挑战性。因此,我们在大肠杆菌中构建并引入了人工异戊烯醇利用途径(IUP),以提高前体的可用性并进一步改善萜类化合物的合成:我们首先在大肠杆菌中构建了人工异戊烯醇利用途径(IUP),以提高前体香叶基二磷酸酯(GGPP)的供应,然后筛选了植物中的香叶基芳樟醇合成酶,实现了香叶基芳樟醇的高效合成(274.78 ± 2.48 mg/L)。为了进一步提高香叶醇的合成,我们对碳源、IPTG浓度和前胡醇添加量等多种培养因素进行了优化,并在摇瓶发酵72小时后获得了447.51 ± 6.92 mg/L的香叶醇。此外,还研究了在 5 升发酵罐中扩大生产规模,通过喂料批量发酵获得 2.06 克/升的香叶醇。据我们所知,这是迄今为止报告的最高滴度:结论:通过两步途径和优化培养条件,可以在大肠杆菌中高效合成香叶基芳樟醇。本研究的发现为在大肠杆菌中生产其他萜类化合物提供了宝贵的启示。
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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
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