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Recombinant Escherichia coli Strains with Inducible Campylobacter jejuni Single Domain Hemoglobin CHb Expression Exhibited Improved Cell Growth in Bioreactor Culture

机译:具有空肠弯曲菌单结构域血红蛋白CHb表达的重组大肠杆菌菌株在生物反应器培养中抑制细胞生长

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摘要

Maintaining an appropriate concentration of dissolved oxygen in aqueous solution is critical for efficient operation of a bioreactor, requiring sophisticated engineering design and a system of regulation to maximize oxygen transfer from the injected air bubbles to the cells. Bacterial hemoglobins are oxygen-binding proteins that transfer oxygen from the environment to metabolic processes and allow bacteria to grow even under microaerophilic conditions. To improve the oxygen utilization efficiency of cells and overcome the oxygen shortage in bioreactors, the gene coding for the Campylobacter jejuni single domain hemoglobin (CHb) gene was artificially synthesized and functionally expressed under the control of inducible expression promoters PT7 and Pvgh in Escherichia coli. The effects of the recombinants PT7-CHb and Pvgh-CHb on cell growth were evaluated in aerobic shake flasks, anaerobic capped bottles and a 5-L bioreactor, and a pronounced improvement in cell biomass was observed for CHb-expressing cells. To determine the growth curves, CHb gene expression, and CHb oxygen-binding capacity of specific recombinants with different promoters, we determined the time course of CHb gene expression in the two recombinants by semi-quantitative RT-PCR and CO differential spectrum assays. Based on the growth patterns of the two recombinants in the bioreactor, we proposed different recombinant types with optimal performance under specific culture conditions.
机译:维持水溶液中溶解氧的适当浓度对于生物反应器的有效运行至关重要,这需要复杂的工程设计和调节系统,以使氧气从注入的气泡到细胞的转移最大化。细菌血红蛋白是氧结合蛋白,可将氧从环境转移到代谢过程,甚至在微需氧条件下也可使细菌生长。为了提高细胞的氧气利用效率并克服生物反应器中的氧气短缺,人工合成空肠弯曲菌单结构域血红蛋白(CHb)基因的基因,并在大肠杆菌中诱导型表达启动子PT7和Pvgh的控制下进行功能表达。在需氧摇瓶,厌氧瓶盖和5-L生物反应器中评估了重组体PT7-CHb和Pvgh-CHb对细胞生长的影响,并且观察到表达CHb的细胞的生物量得到了明显改善。为了确定具有不同启动子的特定重组体的生长曲线,CHb基因表达和CHb氧结合能力,我们通过半定量RT-PCR和CO差异光谱分析确定了两个重组体中CHb基因表达的时间过程。根据两个重组体在生物反应器中的生长模式,我们提出了在特定培养条件下具有最佳性能的不同重组体类型。

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