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通过微生物的系统代谢工程实现类黄酮骨架的大规模生产。

Systems metabolic engineering of microorganisms to achieve large-scale production of flavonoid scaffolds.

作者信息

Wu Junjun, Du Guocheng, Zhou Jingwen, Chen Jian

机构信息

Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu 214122, China; Synergetic Innovation Center of Food Safety and Nutrition, 1800 Lihu Road, Wuxi, Jiangsu 214122, China.

Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu 214122, China; National Engineering Laboratory for Cereal Fermentation Technology (NELCF), Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu 214122, China.

出版信息

J Biotechnol. 2014 Oct 20;188:72-80. doi: 10.1016/j.jbiotec.2014.08.016. Epub 2014 Aug 23.

Abstract

Flavonoids possess pharmaceutical potential due to their health-promoting activities. The complex structures of these products make extraction from plants difficult, and chemical synthesis is limited because of the use of many toxic solvents. Microbial production offers an alternate way to produce these compounds on an industrial scale in a more economical and environment-friendly manner. However, at present microbial production has been achieved only on a laboratory scale and improvements and scale-up of these processes remain challenging. Naringenin and pinocembrin, which are flavonoid scaffolds and precursors for most of the flavonoids, are the model molecules that are key to solving the current issues restricting industrial production of these chemicals. The emergence of systems metabolic engineering, which combines systems biology with synthetic biology and evolutionary engineering at the systems level, offers new perspectives on strain and process optimization. In this review, current challenges in large-scale fermentation processes involving flavonoid scaffolds and the strategies and tools of systems metabolic engineering used to overcome these challenges are summarized. This will offer insights into overcoming the limitations and challenges of large-scale microbial production of these important pharmaceutical compounds.

摘要

黄酮类化合物因其促进健康的活性而具有药用潜力。这些产品的复杂结构使得从植物中提取困难,并且由于使用许多有毒溶剂,化学合成也受到限制。微生物生产提供了一种以更经济和环境友好的方式在工业规模上生产这些化合物的替代方法。然而,目前微生物生产仅在实验室规模上实现,这些工艺的改进和扩大规模仍然具有挑战性。柚皮素和松属素是黄酮类化合物的支架和大多数黄酮类化合物的前体,它们是解决目前限制这些化学品工业生产问题的关键模型分子。系统代谢工程的出现,将系统生物学与合成生物学以及进化工程在系统层面相结合,为菌株和工艺优化提供了新的视角。在这篇综述中,总结了涉及黄酮类化合物支架的大规模发酵过程中的当前挑战以及用于克服这些挑战的系统代谢工程的策略和工具。这将为克服这些重要药物化合物大规模微生物生产的限制和挑战提供见解。

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