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通过新型癸烷响应启动子在. 中对香叶醇生物合成进行调谐。

Tuning Geraniol Biosynthesis via a Novel Decane-Responsive Promoter in .

机构信息

The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China.

The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China.

出版信息

ACS Synth Biol. 2022 May 20;11(5):1835-1844. doi: 10.1021/acssynbio.2c00003. Epub 2022 May 4.

Abstract

Geraniol is a rose-scented monoterpene with significant commercial and industrial value in medicine, condiments, cosmetics, and bioenergy. Here, we first targeted geraniol as a reporter metabolite and explored the suitability and potential of as a heterologous host for monoterpenoid production. Subsequently, dual-pathway engineering was employed to improve the production of geraniol with a geraniol titer of 858.4 mg/L. We then applied a synthetic hybrid promoter approach to develop a decane-responsive hybrid promoter based on the native promoter P derived from itself. The hybrid promoter was able to be induced by -decane with 3.6 times higher transcriptional intensity than the natural promoter P. In particular, the hybrid promoter effectively reduces the conflict between cell growth and product formation in the production of geraniol. Ultimately, 1194.6 mg/L geraniol was obtained at the shake flask level. The strong and tunable decane-responsive hybrid promoter developed in this study provides an important tool for fine regulation of toxic terpenoid production in cells.

摘要

香叶醇是一种玫瑰香味的单萜,具有重要的商业和工业价值,可用于医药、调味品、化妆品和生物能源。在这里,我们首次将香叶醇作为报道代谢物,探索了作为单萜类化合物生产的异源宿主的适宜性和潜力。随后,采用双途径工程提高了香叶醇的产量,香叶醇的产量达到 858.4mg/L。然后,我们应用合成杂交启动子方法,基于 自身的天然启动子 P 开发了一种癸烷响应的杂交启动子。该杂交启动子能够被 -癸烷诱导,转录强度比天然启动子 P 高 3.6 倍。特别是,该杂交启动子有效地减少了在香叶醇生产过程中细胞生长和产物形成之间的冲突。最终,在摇瓶水平获得了 1194.6mg/L 的香叶醇。本研究中开发的强而可调的癸烷响应杂交启动子为细胞内有毒萜类化合物的精细调控提供了重要工具。

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