鼠李糖脂
拉伤
操纵子
异源的
代谢工程
化学
莎梵婷
洋葱伯克霍尔德菌
质粒
生物化学
代谢途径
酶
鞭毛
蛋白质工程
酿酒酵母
生产过剩
合成生物学
细菌
微生物学
机制(生物学)
异源表达
基因工程
生物合成
重组DNA
合理设计
新陈代谢
生物有机化学
催化效率
大肠杆菌
作者
Aiping Pang,Shan-Shan Peng,Xiangyang Li,Xin Li,Kun Yang,Zhi‐Qiang Liu,Yu‐Guo Zheng
标识
DOI:10.1021/acs.jafc.5c06286
摘要
Rhamnolipids are eco-friendly biosurfactants, but their native producer Pseudomonas aeruginosa is an opportunistic pathogen. Herein, the biosafety strain Pseudomonas putida was engineered for efficient rhamnolipid production. The key enzyme RhlA was improved by rational and computer-aided design, which yields RhlAF43W/G130N with enhanced catalytic activity. Molecular dynamics simulations elucidated the mechanism behind its improved performance. Metabolic engineering was further employed to enhance the synthesis efficiency of rhamnolipids. Overexpression of rhlAF43W/G130N and rhlB driven by promoters Plac and Ptac, coupled with heterologous expression of the rmlBDAC operon in flagella deletion strain Δflag, enhanced the availability of two precursors, dTDP-L-rhamnose and β-hydroxy fatty acids, yielding the final strain E3. The strain E3 produced 5.1 g/L rhamnolipid in shake-flask and 28.6 g/L with a productivity of 0.3 g/L/h in a 5 L bioreactor, making the highest titer reported for engineered P. putida KT2440.
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