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Recombinant protein expression in biofilms

机译:重组蛋白在生物膜中的表达

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摘要

Biofilm research is usually focused on the prevention or control of biofilm formation. Recently, the significance of the biofilm mode of growth in biotechnological applications received increased attention. Since biofilm reactors show many advantages over suspended cell reactors, especially in their higher biomass density and operational stability, bacterial biofilms have emerged as an interesting approach for the expression of specific proteins. Despite the potential of biofilm systems, recombinant protein production using biofilms has been scarcely investigated for the past 25 years. Our group has demonstrated that E. coli biofilms were able to produce a model recombinant protein, the enhanced green fluorescent protein (eGFP), at much higher levels than their planktonic counterparts. Even without optimization of cultivation conditions, an attractive productivity was obtained, indicating that biofilm cultures can be used as an alternative form of high cell density cultivation (HCDC). E. coli remains one of the favorite hosts for recombinant protein production and it has been successfully used in metabolic engineering for the synthesis of high value products. This review presents the advantages and concerns of using biofilms for the production of recombinant proteins and summarizes the different biofilm systems which have been described for this purpose. The relative advantages and disadvantages of the four microbial hosts tested for recombinant protein production in biofilms (two bacteria and two filamentous fungi) are also discussed.
机译:生物膜研究通常集中在预防或控制生物膜形成上。最近,生物膜生长模式在生物技术应用中的重要性日益受到关注。由于生物膜反应器显示出优于悬浮细胞反应器的许多优势,尤其是在其更高的生物质密度和操作稳定性方面,细菌生物膜已成为表达特定蛋白质的有趣方法。尽管生物膜系统具有潜力,但是在过去的25年中,几乎没有研究使用生物膜的重组蛋白生产。我们的研究小组证明,大肠杆菌生物膜能够产生一种模型重组蛋白,即增强的绿色荧光蛋白(eGFP),其水平要高于其浮游生物蛋白。即使没有优化培养条件,也获得了诱人的生产率,表明生物膜培养可以用作高细胞密度培养(HCDC)的替代形式。大肠杆菌仍然是重组蛋白生产中最受欢迎的宿主之一,它已成功用于代谢工程中,用于合成高价值的产品。这项审查提出了使用生物膜生产重组蛋白的优点和关注,并总结了为此目的已描述的不同的生物膜系统。还讨论了测试用于在生物膜中重组蛋白生产的四种微生物宿主(两种细菌和两种丝状真菌)的相对优缺点。

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