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Skp 和 FkpA 伴侣蛋白的共表达提高了 scFvD1.3 生产过程中的细胞活力,并改变了应激反应基因的全局表达。

Co-expression of Skp and FkpA chaperones improves cell viability and alters the global expression of stress response genes during scFvD1.3 production.

机构信息

Bioprocessing Technology Institute, Agency for Science, Technology and Research (A*STAR), Singapore.

出版信息

Microb Cell Fact. 2010 Apr 13;9:22. doi: 10.1186/1475-2859-9-22.

Abstract

BACKGROUND

The overexpression of scFv antibody fragments in the periplasmic space of Escherichia coli frequently results in extensive protein misfolding and loss of cell viability. Although protein folding factors such as Skp and FkpA are often exploited to restore the solubility and functionality of recombinant protein products, their exact impact on cellular metabolism during periplasmic antibody fragment expression is not clearly understood. In this study, we expressed the scFvD1.3 antibody fragment in E. coli BL21 and evaluated the overall physiological and global gene expression changes upon Skp or FkpA co-expression.

RESULTS

The periplasmic expression of scFvD1.3 led to a rapid accumulation of insoluble scFvD1.3 proteins and a decrease in cell viability. The co-expression of Skp and FkpA improved scFvD1.3 solubility and cell viability in a dosage-dependent manner. Through mutagenesis experiments, it was found that only the chaperone activity of FkpA, not the peptidyl-prolyl isomerase (PPIase) activity, is required for the improvement in cell viability. Global gene expression analysis of the scFvD1.3 cells over the chaperone-expressing cells showed a clear up-regulation of genes involved in heat-shock and misfolded protein stress responses. These included genes of the major HSP70 DnaK chaperone family and key proteases belonging to the Clp and Lon protease systems. Other metabolic gene expression trends include: (1) the differential regulation of several energy metabolic genes, (2) down-regulation of the central metabolic TCA cycle and transport genes, and (3) up-regulation of ribosomal genes.

CONCLUSIONS

The simultaneous activation of multiple stress related and other metabolic genes may constitute the stress response to protein misfolding in the scFvD1.3 cells. These gene expression information could prove to be valuable for the selection and construction of reporter contructs to monitor the misfolded protein stress response during antibody fragment production.

摘要

背景

scFv 抗体片段在大肠杆菌周质空间中的过表达常常导致广泛的蛋白质错误折叠和细胞活力丧失。尽管经常利用 Skp 和 FkpA 等蛋白折叠因子来恢复重组蛋白产物的可溶性和功能,但它们对周质抗体片段表达过程中细胞代谢的确切影响尚不清楚。在这项研究中,我们在大肠杆菌 BL21 中表达了 scFvD1.3 抗体片段,并评估了 Skp 或 FkpA 共表达时的整体生理和全局基因表达变化。

结果

scFvD1.3 的周质表达导致不溶性 scFvD1.3 蛋白的快速积累和细胞活力下降。Skp 和 FkpA 的共表达以剂量依赖的方式提高了 scFvD1.3 的可溶性和细胞活力。通过突变实验发现,只有 FkpA 的伴侣活性,而不是肽基脯氨酰顺反异构酶(PPIase)活性,对于提高细胞活力是必需的。对过表达伴侣的 scFvD1.3 细胞的全基因表达分析显示,参与热休克和错误折叠蛋白应激反应的基因明显上调。这些基因包括主要 HSP70 DnaK 伴侣家族的基因和属于 Clp 和 Lon 蛋白酶系统的关键蛋白酶。其他代谢基因表达趋势包括:(1)几种能量代谢基因的差异调节,(2)中心代谢 TCA 循环和转运基因的下调,以及(3)核糖体基因的上调。

结论

多种应激相关和其他代谢基因的同时激活可能构成了 scFvD1.3 细胞中蛋白质错误折叠的应激反应。这些基因表达信息对于选择和构建报告基因构建体以监测抗体片段生产过程中错误折叠蛋白应激反应可能是有价值的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/349e/2868799/63152a4d63f4/1475-2859-9-22-1.jpg

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