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构建并鉴定适用于在线分析与重组蛋白生产相关的细菌宿主反应的广谱宿主报告质粒。

Construction and characterization of broad-host-range reporter plasmid suitable for on-line analysis of bacterial host responses related to recombinant protein production.

机构信息

Department of Biotechnology and Food Science, Norwegian University of Science and Technology, Sem Sælandsvei 6-8, 7491, Trondheim, Norway.

Center of Food and Fermentation Technologies, Akadeemia tee 15a, 12618, Tallinn, Estonia.

出版信息

Microb Cell Fact. 2019 May 7;18(1):80. doi: 10.1186/s12934-019-1128-7.

Abstract

BACKGROUND

Bacteria are widely used as hosts for recombinant protein production due to their rapid growth, simple media requirement and ability to produce high yields of correctly folded proteins. Overproduction of recombinant proteins may impose metabolic burden to host cells, triggering various stress responses, and the ability of the cells to cope with such stresses is an important factor affecting both cell growth and product yield.

RESULTS

Here, we present a versatile plasmid-based reporter system for efficient analysis of metabolic responses associated with availability of cellular resources utilized for recombinant protein production and host capacity to synthesize correctly folded proteins. The reporter plasmid is based on the broad-host range RK2 minimal replicon and harbors the strong and inducible XylS/Pm regulator/promoter system, the ppGpp-regulated ribosomal protein promoter PrpsJ, and the σ-dependent synthetic tandem promoter Pibpfxs, each controlling expression of one distinguishable fluorescent protein. We characterized the responsiveness of all three reporters in Escherichia coli by quantitative fluorescence measurements in cell cultures cultivated under different growth and stress conditions. We also validated the broad-host range application potential of the reporter plasmid by using Pseudomonas putida and Azotobacter vinelandii as hosts.

CONCLUSIONS

The plasmid-based reporter system can be used for analysis of the total inducible recombinant protein production, the translational capacity measured as transcription level of ribosomal protein genes and the heat shock-like response revealing aberrant protein folding in all studied Gram-negative bacterial strains.

摘要

背景

由于细菌生长迅速、对培养基要求简单且能够大量生产正确折叠的蛋白质,因此被广泛用作重组蛋白生产的宿主。重组蛋白的过度生产可能会给宿主细胞带来代谢负担,引发各种应激反应,而细胞应对这些应激的能力是影响细胞生长和产物产量的重要因素。

结果

在这里,我们提出了一种基于质粒的多功能报告系统,可有效分析与细胞资源利用和宿主合成正确折叠蛋白质能力相关的代谢反应。该报告质粒基于广泛宿主范围的 RK2 最小复制子,并带有强诱导的 XylS/Pm 调控子/启动子系统、ppGpp 调控的核糖体蛋白启动子 PrpsJ 和 σ 依赖性合成串联启动子 Pibpfxs,每个启动子控制一种可区分的荧光蛋白的表达。我们通过在不同生长和应激条件下培养的细胞培养物中的定量荧光测量来表征所有三个报告基因的响应性。我们还通过使用 Pseudomonas putida 和 Azotobacter vinelandii 作为宿主验证了报告质粒的广泛宿主应用潜力。

结论

该基于质粒的报告系统可用于分析所有研究的革兰氏阴性细菌菌株中的总诱导型重组蛋白生产、作为转录水平核糖体蛋白基因的翻译能力和热休克样反应揭示的异常蛋白质折叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/525a/6505264/27dd2f1ae31d/12934_2019_1128_Fig1_HTML.jpg

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