Carneiro Sónia, Villas-Bôas Silas G, Ferreira Eugénio C, Rocha Isabel
IBB-Institute for Biotechnology and Bioengineering, Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Mol Biosyst. 2011 Mar;7(3):899-910. doi: 10.1039/c0MB00143k. Epub 2010 Dec 9.
Metabolic footprinting has become a valuable analytical approach for the characterization of phenotypes and the distinction of specific metabolic states resulting from environmental and/or genetic alterations. The metabolic impact of heterologous protein production in Escherichia coli cells is of particular interest, since there are numerous cellular stresses triggered during this process that limit the overall productivity, e.g. the stringent response. Because the knowledge on the metabolic responses in recombinant bioprocesses is still scarce, metabolic footprinting can provide relevant information on the intrinsic metabolic adjustments. Thus, the metabolic footprints generated by E. coli W3110 and the ΔrelA mutant strain during recombinant fed-batch fermentations at different experimental conditions were measured and interpreted. The IPTG-induction of the heterologous protein expression resulted in the rapid accumulation of inhibitors of the glyoxylate shunt in the culture broth, suggesting the clearance of this anaplerotic route to replenish the TCA intermediaries withdrawn for the additional formation of the heterologous protein. Nutritional shifts were also critical in the recombinant cellular metabolism, indicating that cells employ diverse strategies to counteract imbalances in the cellular metabolism, including the secretion of certain metabolites that are, most likely, used as a metabolic relief to survival processes.
代谢足迹分析已成为一种有价值的分析方法,用于表征表型以及区分由环境和/或基因改变导致的特定代谢状态。大肠杆菌细胞中异源蛋白生产的代谢影响尤为令人关注,因为在此过程中会引发众多细胞应激反应,这些反应会限制整体生产力,例如严紧反应。由于关于重组生物过程中代谢反应的知识仍然匮乏,代谢足迹分析可以提供有关内在代谢调节的相关信息。因此,对大肠杆菌W3110和ΔrelA突变株在不同实验条件下进行重组补料分批发酵过程中产生的代谢足迹进行了测量和解读。IPTG诱导异源蛋白表达导致培养液中乙醛酸支路抑制剂迅速积累,这表明该回补途径被清除,以补充因额外合成异源蛋白而消耗的三羧酸循环中间产物。营养变化在重组细胞代谢中也很关键,这表明细胞采用多种策略来应对细胞代谢失衡,包括分泌某些代谢物,这些代谢物很可能被用作生存过程中的代谢缓解物质。