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应用多种策略通过工程化. 打通长叶烯生物合成的瓶颈

Application of Multiple Strategies To Debottleneck the Biosynthesis of Longifolene by Engineered .

机构信息

Beijing Bioprocess Key Laboratory, State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

Zhongmu Research Institute, China Animal Husbandry Industry Company, Limited, Beijing 100095, People's Republic of China.

出版信息

J Agric Food Chem. 2022 Sep 14;70(36):11336-11343. doi: 10.1021/acs.jafc.2c04405. Epub 2022 Sep 1.

Abstract

Longifolene as an important sesquiterpene had enormous biological benefits. However, the low productivity of longifolene relying on chemical catalysis and plant extraction limited its wide application. Herein, the longifolene biosynthetic pathway was introduced into , and multiple genetic strategies were applied to debottleneck the synthesis of longifolene, including the regulation of the rate-limiting enzymes, the elimination of the competitive pathways, the screening of the molecular chaperone to improve synthase activity, and the enhancement of the precursor supply. After combinationally applying these optimum strategies, the production of longifolene reached 27.30 mg/L in shake flasks and 1249 mg/L in fed-batch fermentation, respectively, which was the highest yield of longifolene reported thus far. It was demonstrated that the strategies applied in our work were effective in promoting the biosynthesis of longifolene, which not only laid a significant foundation for its industrial production but also provided a platform for the synthesis of other terpenoids.

摘要

榄香醇作为一种重要的倍半萜烯,具有巨大的生物益处。然而,依赖化学催化和植物提取的榄香醇的低产量限制了其广泛应用。在此,榄香醇的生物合成途径被引入 ,并应用多种遗传策略来消除榄香醇合成的瓶颈,包括调节限速酶、消除竞争途径、筛选分子伴侣以提高合酶活性以及增强前体供应。通过组合应用这些最佳策略,榄香醇的产量在摇瓶中达到 27.30mg/L,在分批补料发酵中达到 1249mg/L,这是迄今为止报道的榄香醇的最高产量。结果表明,我们工作中应用的策略在促进榄香醇生物合成方面是有效的,不仅为其工业化生产奠定了重要基础,还为其他萜类化合物的合成提供了平台。

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