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Prediction of recombinant protein production by Escherichia coli derived online from indicators of metabolic burden

机译:从代谢负担指标中衍生的大肠杆菌的重组蛋白产生预测

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Background: The oxygen transfer rate (OTR) and the biomass concentration are two important parameters describing a microbial fermentation. It has been shown before that from the course of these parameters over time information on metabolic burden during heterologous protein production can be obtained. While online monitoring in large fermenters is ubiquitously established, it is still not a common practice in small-scale cultures. Nevertheless, several techniques like the Respiration Activity MOnitoring System (RAMOS) device for online monitoring of the OTR in shake flasks and the BioLector device for measuring scattered light (ScL) representing biomass in microtiter plates have been developed. Results: A new microtiter plate-based method is presented that reveals how online derived ScL signals can be transformed into signals that are proportional to the courses of OTR over time for Escherichia coli. The transformed signal is obtained by simply taking the first derivative of ScL (dScL/dt). The proportionality of both parameters is successfully validated for the strains E. coli BL21(DE3) and Tuner(DE3) expressing cellulases and the fluorescent protein FbFP, respectively. Relative amounts of produced heterologous proteins are predicted exclusively based on the course of the transformed ScL signal. A variety of induction conditions with varying inducer concentration and induction time were investigated with this method. Conclusion: The presented method based on ScL measurement allows for high-throughput online determination of signals proportional to OTR courses. They enable the interpretation of physiological states and offer the possibility to predict the recombinant protein production in E. coli. (c) 2018 American Institute of Chemical Engineers
机译:背景:氧传输速率(OTR)和生物质浓度是描述微生物发酵的两个重要参数。已经显示出在这些参数的过程中,随着时间的推移可以获得关于异源蛋白质产生期间的代谢负担的信息。虽然在线监测大型发酵厂在普遍建立中,但它仍然不是小规模文化的常见做法。然而,已经开发出用于在抖动烧瓶中用于在线监测OTR的呼吸活动监测系统(RAMOS)装置的几种技术,并且已经开发了用于测量在微量滴定板中表示生物质的散射光(SCL)的散射光(SCL)。结果:提出了一种新的微量滴定板的方法,揭示了在大肠杆菌随着时间的推移与OTR的课程中成比例的信号中如何转化的基于微量滴定板的方法。通过简单地采用SCL(DSCL / DT)的第一衍生物来获得变换的信号。两种参数的比例成功验证了表达纤维素酶和荧光蛋白FBFP的菌株大肠杆菌BL21(DE3)和调谐器(DE3)。基于转化的SCL信号的过程,预测产生的异源蛋白的相对量。采用该方法研究了具有不同诱导剂浓度和诱导时间的各种诱导条件。结论:基于SCL测量的呈现方法允许高通量在线确定与OTR课程成比例的信号。它们能够解释生理状态,并提供预测大肠杆菌中重组蛋白质产生的可能性。 (c)2018美国化学工程研究所

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