Institute of Chemical, Environmental and Bioscience Engineering, Research Area Biochemical Engineering, Technische Universität Wien, TU Wien, Gumpendorferstrasse 1a, 1060, Vienna, Austria.
Bioprocess Biosyst Eng. 2021 Jun;44(6):1049-1061. doi: 10.1007/s00449-021-02514-w. Epub 2021 Jan 24.
Technical failures lead to deviations in process parameters that can exceed studied process boundaries. The impact on cell and target protein is often unknown. However, investigations on common technical failures might yield interesting insights into process and protein robustness. Recently, we published a study on the impact of technical failures on an inclusion body process that showed high robustness due to the inherent stability of IBs. In this follow-up study, we investigated the influence of technical failures during production of two soluble, cytosolic proteins in E. coli BL21(DE3). Cell physiology, productivity and protein quality were analyzed, after technical failures in aeration, substrate supply, temperature and pH control had been triggered. In most cases, cell physiology and productivity recovered during a subsequent regeneration phase. However, our results highlight that some technical failures lead to persistent deviations and affect the quality of purified protein.
技术故障会导致过程参数发生偏差,这些偏差可能超过已研究的过程范围。对细胞和目标蛋白的影响通常是未知的。然而,对常见技术故障的调查可能会为过程和蛋白质稳健性提供有趣的见解。最近,我们发表了一项关于技术故障对包涵体过程影响的研究,该研究表明由于包涵体固有的稳定性,该过程具有很高的稳健性。在这项后续研究中,我们研究了在大肠杆菌 BL21(DE3)中生产两种可溶性胞质蛋白时技术故障的影响。在触发通气、底物供应、温度和 pH 控制方面的技术故障后,分析了细胞生理学、生产力和蛋白质质量。在大多数情况下,细胞生理学和生产力在随后的再生阶段恢复。然而,我们的结果强调了一些技术故障会导致持续的偏差,并影响纯化蛋白质的质量。