大肠杆菌
重组DNA
异源的
质粒
发酵
蛋白质表达
异源表达
效价
靶蛋白
化学
可扩展性
生物化学
生物
基因
计算机科学
抗体
数据库
免疫学
作者
Romel Menacho‐Melgar,Zhixia Ye,Eirik A. Moreb,Tian Yang,John P. Efromson,John S. Decker,Ruixin Wang,Michael Lynch
摘要
We report the scalable production of recombinant proteins in Escherichia coli, reliant on tightly controlled autoinduction, triggered by phosphate depletion in the stationary phase. The method, reliant on engineered strains and plasmids, enables improved protein expression across scales. Expression levels using this approach have reached as high as 55% of the total cellular protein. The initial use of the method in instrumented fed-batch fermentations enables cell densities of ∼30 gCDW/L and protein titers up to 8.1 ± 0.7 g/L (∼270 mg/gCDW). The process has also been adapted to an optimized autoinduction media, enabling routine batch production at culture volumes of 20 μl (384-well plates), 100 μl (96-well plates), 20 ml, and 100 ml. In batch cultures, cell densities routinely reach ∼5-7 gCDW/L, offering protein titers above 2 g/L. The methodology has been validated with a set of diverse heterologous proteins and is of general use for the facile optimization of routine protein expression from high throughput screens to fed-batch fermentation.
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