Medina-Bolívar Fabricio, Cramer Carole
Fralin Biotechnology Center, Virginia Polytechnic Institute and State University, Blacksburg, VA, USA.
Methods Mol Biol. 2004;267:351-63. doi: 10.1385/1-59259-774-2:351.
Plant-based expression of recombinant proteins offers significant advantages over transgenic animal-and cell-based systems. Unlike bacteria, plants perform the complex protein-processing steps required to produce eukaryotic proteins in active form. In order to facilitate protein production and purification we used hairy root cultures as a secretion-based in vitro plant system. We utilized the green fluorescent protein (GFP) as our model protein and expressed it for secretion in tobacco hairy root cultures. For large scale production of GFP, we adapted the Life-Reactor trade mark plastic sleeve bioreactor for growth of hairy roots in cultures containing up to 5 L of medium. Yields higher than 800 micro g of GFP per liter of culture were obtained after 21 d of incubation, representing almost 20% of the total secreted protein. The use of the plastic sleeve bioreactor system for expression of proteins in hairy roots allows for continuous or inducible production and recovery, while maintaining absolute containment, of the recombinant product.
与基于转基因动物和细胞的系统相比,基于植物的重组蛋白表达具有显著优势。与细菌不同,植物能够执行将真核蛋白加工成活性形式所需的复杂步骤。为了促进蛋白质的生产和纯化,我们使用毛状根培养物作为基于分泌的体外植物系统。我们利用绿色荧光蛋白(GFP)作为模型蛋白,并在烟草毛状根培养物中表达以进行分泌。为了大规模生产GFP,我们采用了Life-Reactor商标的塑料套筒生物反应器,用于在含有多达5升培养基的培养物中培养毛状根。培养21天后,每升培养物中获得的GFP产量高于800微克,几乎占总分泌蛋白的20%。使用塑料套筒生物反应器系统在毛状根中表达蛋白质,能够在保持重组产物绝对封闭的同时,实现连续或诱导性的生产和回收。