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通过工程改造从葡萄糖生产克级非天然红景天苷类似物

Producing Gram-Scale Unnatural Rosavin Analogues from Glucose by Engineered .

作者信息

Bi Huiping, Wang Shuai, Zhou Wei, Zhuang Yibin, Liu Tao

机构信息

Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences , Tianjin 300308 , China.

Key Laboratory of Systems Microbial Biotechnology , Chinese Academy of Sciences , Tianjin 300308 , China.

出版信息

ACS Synth Biol. 2019 Aug 16;8(8):1931-1940. doi: 10.1021/acssynbio.9b00219. Epub 2019 Jul 22.

Abstract

Cinnamyl alcohol glycosides (CAGs) are key active ingredients of the precious medicinal plant L., which has diverse pharmacological activities. The quality of extracts is standardized to the contents of rosavin, a cinnamyl alcohol disaccharide, along with salidroside. The supply of rosavin and analogues is limited by both the inefficiency of chemical synthesis methods and the shortage of natural resources. Herein, we achieved synthesis of a series of rosavin analogues by engineered strains. First, cinnamyl alcohol was synthesized by expression of phenylalanine ammonia-lyase (PAL), hydroxycinnamate:CoA ligase, and cinnamyl-CoA reductase in a phenylalanine high-producing strain. UGT73C5 from and a sugar chain elongating glycosyltransferase from , CaUGT3 sequentially catalyzed the formation of an unnatural cinnamyl alcohol diglucoside, named rosavin B. Then, these biosynthetic enzymes were transformed into a tyrosine high-producing strain, except that PAL was replaced by a tyrosine ammonia-lyase, and synthesis of mono- and diglucosides of -coumaryl alcohol with sugars attached to aliphatic or phenolic hydroxyl position was achieved. Finally, fed-batch fermentation was conducted for the strain producing rosavin B, and the titer reached 4.7 g/L. Tri- and tetraglucosides of cinnamyl alcohol were also produced by fed-batch fermentation. In summary, seven rosavin analogues including six unnatural compounds were produced from glucose by microorganisms. This work expanded the structural diversity of CAGs, which holds promise to discover new analogues with improved pharmaceutical properties. The study also paves the way for producing CAGs in a sustainable and cheap way.

摘要

肉桂醇糖苷(CAGs)是珍贵药用植物L.的关键活性成分,该植物具有多种药理活性。提取物的质量根据肉桂醇二糖rosavin以及红景天苷的含量进行标准化。rosavin及其类似物的供应受到化学合成方法效率低下和自然资源短缺的限制。在此,我们通过工程菌株实现了一系列rosavin类似物的合成。首先,通过在高苯丙氨酸生产菌株中表达苯丙氨酸解氨酶(PAL)、羟基肉桂酸:辅酶A连接酶和肉桂酰辅酶A还原酶来合成肉桂醇。来自的UGT73C5和来自的糖链延长糖基转移酶CaUGT3依次催化形成一种非天然的肉桂醇二糖苷,命名为rosavin B。然后,将这些生物合成酶转化到高酪氨酸生产菌株中,只是用酪氨酸解氨酶取代了PAL,实现了对香豆醇单糖苷和二糖苷的合成,糖连接在脂肪族或酚羟基位置。最后,对生产rosavin B的菌株进行补料分批发酵,产量达到4.7 g/L。补料分批发酵还产生了肉桂醇的三糖苷和四糖苷。总之,微生物利用葡萄糖生产了七种rosavin类似物,包括六种非天然化合物。这项工作扩展了CAGs的结构多样性,有望发现具有更好药学性质的新类似物。该研究也为以可持续且廉价的方式生产CAGs铺平了道路。

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