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组合代谢工程与酶催化实现了柯烷酸的高效生产。

Combinatorial Metabolic Engineering and Enzymatic Catalysis Enable Efficient Production of Colanic Acid.

作者信息

Li Suwei, Xu Xianhao, Lv Xueqin, Liu Yanfeng, Li Jianghua, Du Guocheng, 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

Microorganisms. 2022 Apr 22;10(5):877. doi: 10.3390/microorganisms10050877.

Abstract

Colanic acid can promote the lifespan of humans by regulating mitochondrial homeostasis, and it has widespread applications in the field of health. However, colanic acid is produced at a low temperature (20 °C) with low titer. Using K-12 MG1655, we constructed the SRP-4 strain with high colanic acid production at 30 °C by enhancing the precursor supply and relieving the regulation of transcription for colanic acid synthesis genes by the RCS system. After media optimization, the colanic acid titer increased by 579.9-fold and reached 12.2 g/L. Subsequently, we successfully purified the colanic acid hydrolase and reduced the molecular weight of colanic acid (106.854 kDa), thereby eliminating the inhibition of high-molecular-weight colanic acid on strain growth. Finally, after adding the colanic acid hydrolase (4000 U/L), the colanic acid with low molecular weight reached 24.99 g/L in 3-L bioreactor, the highest titer reported so far. This high-producing strain of colanic acid will promote the application of low-molecular-weight colanic acid in the field of health.

摘要

结肠酸可通过调节线粒体稳态来延长人类寿命,并且在健康领域有广泛应用。然而,结肠酸是在低温(20°C)下产生的,产量较低。我们使用K-12 MG1655,通过增强前体供应并解除RCS系统对结肠酸合成基因转录的调控,构建了在30°C下能高产结肠酸的SRP-4菌株。经过培养基优化后,结肠酸产量提高了579.9倍,达到12.2 g/L。随后,我们成功纯化了结肠酸水解酶并降低了结肠酸的分子量(106.854 kDa),从而消除了高分子量结肠酸对菌株生长的抑制作用。最后,在添加结肠酸水解酶(4000 U/L)后,低分子量结肠酸在3-L生物反应器中达到了24.99 g/L,这是迄今为止报道的最高产量。这种高产结肠酸菌株将促进低分子量结肠酸在健康领域的应用。

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