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工程大肠杆菌中白藜芦醇生产的组合优化。

Combinatorial Optimization of Resveratrol Production in Engineered E. coli.

机构信息

Department of Pharmaceutical Engineering, School of Chemical Engineering and Technology , Tianjin University , Tianjin 300350 , China.

Key Laboratory of Systems Bioengineering , Ministry of Education , Tianjin 300350 , China.

出版信息

J Agric Food Chem. 2018 Dec 26;66(51):13444-13453. doi: 10.1021/acs.jafc.8b05014. Epub 2018 Dec 11.

Abstract

Resveratrol, a plant-derived polyphenolic compound with various health activities, is widely used in nutraceutical and food additives. Herein, combinatorial optimization of resveratrol biosynthetic pathway and intracellular environment of E. coli was carried out. By screening pathway genes from various species and exploring their expression pattern, we initially constructed resveratrol-producing strains. Further targeting at availability of malonyl-CoA through expressing ACC of Corynebacterium glutamicum and antisense inhibiting native fabD significantly increased resveratrol biosynthesis. Transport engineering for resveratrol secretion and molecular chaperones helping for folding heterologous enzymes were employed to improve the intracellular environments in remarkable degrees. By introducing PcTAL of Phanerochaete chrysosporium and tuning expression model of PcTAL, At4CL, and VvSTS, an engineered E. coli produced 57.77 mg/L of resveratrol from l-tyrosine. After integrating the above strategies, resveratrol titer reached to 238.71 mg/L from l-tyrosine. The combinatorial optimization in this study provides a promising strategy to produce valuable natural products in heterologous expression systems.

摘要

白藜芦醇是一种具有多种健康活性的植物来源多酚化合物,广泛应用于营养保健品和食品添加剂。在此,我们对大肠杆菌中白藜芦醇生物合成途径和细胞内环境进行了组合优化。通过筛选来自不同物种的途径基因并探索其表达模式,我们初步构建了白藜芦醇生产菌株。进一步通过表达谷氨酸棒杆菌的 ACC 和反义抑制天然 fabD 来靶向提供丙二酰辅酶 A,显著提高了白藜芦醇的生物合成。通过对白腐真菌 PcTAL 的转运工程和帮助折叠异源酶的分子伴侣的应用,极大地改善了细胞内环境。通过引入 Phanerochaete chrysosporium 的 PcTAL 并调整 PcTAL、At4CL 和 VvSTS 的表达模型,工程大肠杆菌可以从 l-酪氨酸生产 57.77mg/L 的白藜芦醇。整合上述策略后,l-酪氨酸的白藜芦醇产量达到 238.71mg/L。本研究中的组合优化为在异源表达系统中生产有价值的天然产物提供了一种很有前途的策略。

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