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用于高效视黄醇合成的代谢工程。

Metabolic Engineering of for Efficient Retinol Synthesis.

作者信息

Wang Xuan, Xu Xianhao, Liu Jiaheng, Liu Yanfeng, Li Jianghua, Du Guocheng, Lv Xueqin, Liu Long

机构信息

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

Science Center for Future Foods, Jiangnan University, Wuxi 214122, China.

出版信息

J Fungi (Basel). 2023 Apr 26;9(5):512. doi: 10.3390/jof9050512.

Abstract

Retinol, the main active form of vitamin A, plays a role in maintaining vision, immune function, growth, and development. It also inhibits tumor growth and alleviates anemia. Here, we developed a strain capable of high retinol production. Firstly, the de novo synthesis pathway of retinol was constructed in to realize the production of retinol. Second, through modular optimization of the metabolic network of retinol, the retinol titer was increased from 3.6 to 153.6 mg/L. Then, we used transporter engineering to regulate and promote the accumulation of the intracellular precursor retinal to improve retinol production. Subsequently, we screened and semi-rationally designed the key enzyme retinol dehydrogenase to further increase the retinol titer to 387.4 mg/L. Lastly, we performed two-phase extraction fermentation using olive oil to obtain a final shaking flask retinol titer of 1.2 g/L, the highest titer reported at the shake flask level. This study laid the foundation for the industrial production of retinol.

摘要

视黄醇是维生素A的主要活性形式,在维持视力、免疫功能、生长和发育方面发挥作用。它还能抑制肿瘤生长并缓解贫血。在此,我们构建了一种能够高产视黄醇的菌株。首先,在[具体对象]中构建视黄醇的从头合成途径以实现视黄醇的生产。其次,通过对视黄醇代谢网络的模块化优化,视黄醇产量从3.6毫克/升提高到153.6毫克/升。然后,我们利用转运体工程来调节和促进细胞内前体视黄醛的积累以提高视黄醇产量。随后,我们筛选并半理性设计关键酶视黄醇脱氢酶,将视黄醇产量进一步提高到387.4毫克/升。最后,我们使用橄榄油进行两相萃取发酵,在摇瓶中获得了1.2克/升的最终视黄醇产量,这是摇瓶水平报道的最高产量。本研究为视黄醇的工业化生产奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b49/10219262/ccf1840499ab/jof-09-00512-g001.jpg

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