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模拟从头生物合成的天然途径:从可获取的碳源生产天然香草醛。

Mimicking a natural pathway for de novo biosynthesis: natural vanillin production from accessible carbon sources.

作者信息

Ni Jun, Tao Fei, Du Huaiqing, Xu Ping

机构信息

State Key Laboratory of Microbial Metabolism, and School of Life Sciences &Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.

出版信息

Sci Rep. 2015 Sep 2;5:13670. doi: 10.1038/srep13670.

Abstract

Plant secondary metabolites have been attracting people's attention for centuries, due to their potentials; however, their production is still difficult and costly. The rich diversity of microbes and microbial genome sequence data provide unprecedented gene resources that enable to develop efficient artificial pathways in microorganisms. Here, by mimicking a natural pathway of plants using microbial genes, a new metabolic route was developed in E. coli for the synthesis of vanillin, the most widely used flavoring agent. A series of factors were systematically investigated for raising production, including efficiency and suitability of genes, gene dosage, and culture media. The metabolically engineered strain produced 97.2 mg/L vanillin from l-tyrosine, 19.3 mg/L from glucose, 13.3 mg/L from xylose and 24.7 mg/L from glycerol. These results show that the metabolic route enables production of natural vanillin from low-cost substrates, suggesting that it is a good strategy to mimick natural pathways for artificial pathway design.

摘要

几个世纪以来,植物次生代谢产物因其潜力一直吸引着人们的关注;然而,其生产仍然困难且成本高昂。微生物的丰富多样性和微生物基因组序列数据提供了前所未有的基因资源,能够在微生物中开发高效的人工途径。在此,通过利用微生物基因模拟植物的天然途径,在大肠杆菌中开发了一条用于合成香草醛(最广泛使用的调味剂)的新代谢途径。为了提高产量,系统地研究了一系列因素,包括基因的效率和适用性、基因剂量和培养基。代谢工程改造的菌株从L-酪氨酸产生了97.2毫克/升香草醛,从葡萄糖产生了19.3毫克/升,从木糖产生了13.3毫克/升,从甘油产生了24.7毫克/升。这些结果表明,该代谢途径能够从低成本底物生产天然香草醛,这表明模仿天然途径进行人工途径设计是一种很好的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f074/4557066/49173cb59a6a/srep13670-f1.jpg

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