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系统使用合成的 5'-UTR RNA 结构来调节哺乳动物细胞工厂中复杂蛋白质的翻译效率和质量。

Systematic use of synthetic 5'-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories.

机构信息

ACIB Austrian Centre of Industrial Biotechnology, Krenngasse 37, 8010 Graz, Austria.

BOKU University of Natural Resources and Life Sciences, Department of Biotechnology, Vienna 1190, Austria.

出版信息

Nucleic Acids Res. 2020 Nov 18;48(20):e119. doi: 10.1093/nar/gkaa847.

Abstract

Predictably regulating protein expression levels to improve recombinant protein production has become an important tool, but is still rarely applied to engineer mammalian cells. We therefore sought to set-up an easy-to-implement toolbox to facilitate fast and reliable regulation of protein expression in mammalian cells by introducing defined RNA hairpins, termed 'regulation elements (RgE)', in the 5'-untranslated region (UTR) to impact translation efficiency. RgEs varying in thermodynamic stability, GC-content and position were added to the 5'-UTR of a fluorescent reporter gene. Predictable translation dosage over two orders of magnitude in mammalian cell lines of hamster and human origin was confirmed by flow cytometry. Tuning heavy chain expression of an IgG with the RgEs to various levels eventually resulted in up to 3.5-fold increased titers and fewer IgG aggregates and fragments in CHO cells. Co-expression of a therapeutic Arylsulfatase-A with RgE-tuned levels of the required helper factor SUMF1 demonstrated that the maximum specific sulfatase activity was already attained at lower SUMF1 expression levels, while specific production rates steadily decreased with increasing helper expression. In summary, we show that defined 5'-UTR RNA-structures represent a valid tool to systematically tune protein expression levels in mammalian cells and eventually help to optimize recombinant protein expression.

摘要

可预测地调节蛋白质表达水平以提高重组蛋白生产已成为一种重要工具,但在工程哺乳动物细胞中仍很少应用。因此,我们试图建立一个易于实施的工具箱,通过在 5'非翻译区 (UTR) 中引入定义明确的 RNA 发夹,称为“调节元件 (RgE)”,来快速可靠地调节哺乳动物细胞中的蛋白质表达。RgE 在热力学稳定性、GC 含量和位置上有所不同,被添加到荧光报告基因的 5'UTR 中,以影响翻译效率。通过流式细胞术证实,在仓鼠和人源的哺乳动物细胞系中,RgE 可在两个数量级范围内实现可预测的翻译剂量。通过 RgE 对 IgG 的重链表达进行各种水平的调节,最终导致 CHO 细胞中的滴度提高了 3.5 倍,IgG 聚集物和片段减少。用 RgE 调节所需辅助因子 SUMF1 的水平共表达治疗性 Arylsulfatase-A 表明,最大特异性磺基酶活性已经在较低的 SUMF1 表达水平下达到,而特异性生产速率随着辅助因子表达的增加而稳步下降。总之,我们表明,定义明确的 5'UTR RNA 结构代表了一种在哺乳动物细胞中系统地调节蛋白质表达水平的有效工具,并最终有助于优化重组蛋白表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69ef/7672427/d44db16ed926/gkaa847fig1.jpg

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