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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >A functional high-content miRNA screen identifies miR-30 family to boost recombinant protein production in CHO cells
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A functional high-content miRNA screen identifies miR-30 family to boost recombinant protein production in CHO cells

机译:功能强大的高含量miRNA筛选可鉴定miR-30家族,以促进CHO细胞中重组蛋白的产生

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The steady improvement of mammalian cell factories for the production of biopharmaceuticals is a key challenge for the biotechnology community. Recently, small regulatory microRNAs (miRNAs) were identified as novel targets for optimizing Chinese hamster ovary (CHO) production cells as they do not add any translational burden to the cell while being capable of regulating entire physiological pathways. The aim of the present study was to elucidate miRNA function in a recombinant CHO-SEAP cell line by means of a genome-wide high-content miRNA screen. This screen revealed that out of the 1,139 miRNAs examined, 21% of the miRNAs enhanced cell-specific SEAP productivity mainly resulting in elevated volumetric yields, while cell proliferation was accelerated by 5% of the miRNAs. Conversely, cell death was diminished by 13% (apoptosis) or 4% (necrosis) of all transfected miRNAs. Besides these large number of identified target miRNAs, the outcome of our studies suggest that the entire miR-30 family substantially improves bioprocess performance of CHO cells. Stable miR-30 over expressing cells outperformed parental cells by increasing SEAP productivity or maximum cell density of approximately twofold. Our results highlight the application of miRNAs as powerful tools for CHO cell engineering, identified the miR-30 family as a critical component of cell proliferation, and support the notion that miRNAs are powerful determinants of cell viability.
机译:哺乳动物细胞工厂用于生物药物生产的稳定改进是生物技术界面临的主要挑战。最近,小型调节性microRNA(miRNA)被确定为优化中国仓鼠卵巢(CHO)生产细胞的新靶标,因为它们不给细胞增加任何翻译负担,同时又能够调节整个生理途径。本研究的目的是通过全基因组高含量的miRNA筛选来阐明miRNA在重组CHO-SEAP细胞系中的功能。此屏幕显示,在检查的1139个miRNA中,有21%的miRNA增强了细胞特异性SEAP的生产力,主要导致体积产量的提高,而细胞增殖则由5%的miRNA加速。相反,所有转染的miRNA的细胞死亡减少了13%(凋亡)或4%(坏死)。除了这些大量已鉴定的靶标miRNA,我们的研究结果还表明,整个miR-30家族可显着改善CHO细胞的生物过程性能。通过增加SEAP生产率或大约两倍的最大细胞密度,过表达的稳定miR-30细胞优于亲代细胞。我们的结果强调了miRNA作为CHO细胞工程设计的有力工具的应用,确定了miR-30家族是细胞增殖的重要组成部分,并支持miRNA是细胞生存力的决定因素的观点。

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