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Production of antibody fragment (Fab) throughout Escherichia coli fed-batch fermentation process: Changes in titre, location and form of product

机译:在整个大肠杆菌喂养的批量发酵过程中生产抗体片段(Fab):滴度,产品的位置和形式的变化

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摘要

Background: Recombinant proteins, including antibodies and antibody fragments, often contain disulfide bond bridges that are necessary for their folding, stability and function. Production of disulfide-bond-containing proteins in the periplasm of Escherichia coli has been very useful, due to unique characteristics of the periplasm, for obtaining fully active and correctly folded products and for alleviating downstream processing. Results: In this study, fed-batch cultivation of Escherichia coli (E. coli) for production of Fab D1.3, which is an anti-hen egg white lysozyme (HEWL) antibody fragment was carried out at 37ºC, and the bacterial cells were induced by adding 0.1 mM IPTG to the culture medium. Fermentor was sampled over the course of fermentation; the bacterial cells were centrifugally separated from the culture broth and subjected to osmotic shock (with excluding HEWL) and sonication procedures. The resulting fractions were analysed for Fab using a combination of ELISA, SDS-PAGE and Western blotting and changes in product titre, location, and form was assessed throughout growth. It was shown that osmotic shock released the Fab from the periplasm very efficiently and its efficacy was 20-45% more than sonication. This study demonstrates that, at high cell density cultivation in fermentor, target product can appear inside and outside the cells, depending on the time of induction. The maximum amount of Fab (47 mg/l) in the periplasm was reached at 14 hrs cultivation (4 hrs post induction), being suitable time for cell harvest, selective periplasmic extraction and downstream capture. The Fab increasingly leaked into the culture medium, and reached its maximum culture medium titre of ~78 mg/l after 6 hrs post induction. After 16 hrs cultivation (6 hrs post induction) the amount of Fab remained constant in different locations within and outside the cells. Western blot analysis of cell fractions showed that certain amount of the Fab was also produced in the cells as insoluble form. Conclusions: In this work we showed that the production of Fab in the periplasm during high cell density cultivation of E. coli in fermentor can be challenging as the product may appear in various locations within and outside the cells. To exploit the advantages of the periplasmic expression systems for purification in downstream processing, bacterial cells should be harvested when they maintain the majority of the target protein in their periplasmic space (i.e. 4 hrs post induction).
机译:背景:重组蛋白,包括抗体和抗体片段,经常含有二硫键桥所必需的它们的折叠,稳定性和功能。在大肠杆菌的周质中含二硫键的蛋白质的产量一直是非常有用的,由于周质的独特的特点,为了获得充分的活性和正确折叠的产品和用于减轻下游处理。结果:在这项研究中,大肠杆菌(大肠杆菌)进行生产的Fab D1.3,这是一种抗鸡蛋白溶菌酶(HEWL)抗体片段的补料分批培养在37℃进行,细菌细胞通过加入0.1mM IPTG到培养基中被诱导。发酵罐经发酵过程中采样;细菌细胞离心从培养液中分离出来,并进行渗透休克(与不含HEWL)和超声处理过程。使用ELISA,SDS-PAGE和Western印迹和产物滴度,位置变化的组合所得到的级分进行分析的Fab,并在整个生长形式进行了评估。结果表明,渗透压休克从周质释放所述Fab非常有效地和其疗效是20-45%以上超声处理。这项研究表明,在发酵罐中高细胞密度培养,目标产物可以在里面并在细胞外出现,这取决于感应的时间。在周质中的Fab的最大量(47毫克/升)在14小时培养(4个小时诱导后)为止,是用于细胞收获,选择性周质提取和下游捕获合适的时间。所述Fab日益泄漏到培养基中,6个小时后诱导后达到〜78毫克/升的最大培养基滴度。 16小时后培养(6个小时后诱导)的Fab的量保持在内部和细胞外部的不同位置是恒定的。细胞级分的Western印迹分析表明,在Fab的一定量的在细胞中作为不溶性形式也产生。结论:在本工作中,我们发现,在大肠杆菌大肠杆菌发酵罐的高细胞密度培养中在周质中生产的Fab可以是具有挑战性的产品可能会出现在内部和细胞外部的各种位置。为了利用周质表达系统的优势为在下游处理纯化,当它们保留大部分靶蛋白在它们的周质空间中的细菌细胞应收获(即4个小时诱导后)。

著录项

  • 作者

    Reza Jalalirad;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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