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Non-conventional induction strategies for production of subunit swine erysipelas vaccine antigen in rE. coli fed-batch cultures

机译:在rE中产生亚单位猪丹毒疫苗抗原的非常规诱导策略。大肠杆菌补料分批培养

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摘要

In spite of the large number of reports on fed-batch cultivation of E. coli, alternative cultivation/induction strategies remain to be more deeply exploited. Among these strategies, it could be mentioned the use of complex media with combination of different carbon sources, novel induction procedures and feed flow rate control matching the actual cell growth rate. Here, four different carbon source combinations (glucose, glycerol, glucose + glycerol and auto-induction) in batch media formulation were compared. A balanced combination of glucose and glycerol in a complex medium formulation led to: fast growth in the batch-phase; reduced plasmid instability by preventing early expression leakage; and protein volumetric productivity of 0.40 g.L-1.h-1. Alternative induction strategies were also investigated. A mixture of lactose and glycerol as supplementary medium fully induced a high biomass population, reaching a good balance between specific protein production (0.148 gprot.gDCW-1) and volumetric productivity (0.32 g.L-1.h-1). The auto-induction protocol showed excellent results on specific protein production (0.158 gprot.gDCW-1) in simple batch cultivations. An automated feed control based on the on-line estimated growth rate was implemented, which allowed cells to grow at higher rates than those generally used to avoid metabolic overflow, without leading to acetate accumulation. Some of the protocols described here may provide a useful alternative to standard cultivation and recombinant protein production processes, depending on the performance index that is expected to be optimized. The protocols using glycerol as carbon source and induction by lactose feeding, or glycerol plus glucose in batch medium and induction by lactose pulse led to rSpaA production in the range of 6 g.L-1, in short fed-batch processes (16 to 20 h) with low accumulation of undesired side metabolites.
机译:尽管关于大肠杆菌的分批补料培养的报道很多,但替代性的培养/诱导策略仍有待更深入地利用。在这些策略中,可以提到使用具有不同碳源的复合培养基,新颖的诱导程序和与实际细胞生长速率匹配的进料流速控制。在此,比较了分批培养基配方中四种不同的碳源组合(葡萄糖,甘油,葡萄糖+甘油和自感应)。复杂培养基配方中葡萄糖和甘油的平衡组合导致:分批阶段快速生长;通过防止早期表达泄漏减少质粒的不稳定性;和蛋白质体积生产力为0.40 g.L -1 .h -1 。还研究了替代诱导策略。乳糖和甘油的混合物作为辅助培养基充分诱导了高生物量种群,在特定蛋白质产量(0.148 gprot.gDCW -1 )和容积生产率(0.32 gL -1)之间达到了良好的平衡 .h -1 )。自动诱导方案在简单的分批培养中显示出特定蛋白质产量(0.158 gprot.gDCW -1 )的优异结果。实施了基于在线估计生长速率的自动化饲料控制,该控制可使细胞以比通常用于避免代谢溢出的速率更高的速率生长,而不会导致乙酸盐积累。此处描述的某些协议可能会为标准培养和重组蛋白生产过程提供有用的替代方法,具体取决于预期会优化的性能指标。以甘油为碳源并通过乳糖进料诱导的方法,或在间歇培养基中添加甘油加葡萄糖并通过乳糖脉冲诱导的方案,在短期分批进料中导致rSpaA的产生范围为6 gL -1 过程(16到20小时)积聚了不想要的副代谢物。

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