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A cross-species whole genome siRNA screen in suspension-cultured Chinese hamster ovary cells identifies novel engineering targets

机译:悬浮培养的中国仓鼠卵巢细胞中的跨物种全基因组siRNA筛选确定了新的工程靶标

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摘要

High-throughput siRNA screens were only recently applied to cell factories to identify novel engineering targets which are able to boost cells towards desired phenotypes. While siRNA libraries exist for model organisms such as mice, no CHO-specific library is publicly available, hindering the application of this technique to CHO cells. The optimization of these cells is of special interest, as they are the main host for the production of therapeutic proteins. Here, we performed a cross-species approach by applying a mouse whole-genome siRNA library to CHO cells, optimized the protocol for suspension cultured cells, as this is the industrial practice for CHO cells, and developed an in silico method to identify functioning siRNAs, which also revealed the limitations of using cross-species libraries. With this method, we were able to identify several genes that, upon knockdown, enhanced the total productivity in the primary screen. A second screen validated two of these genes, Rad21 and Chd4, whose knockdown was tested in additional CHO cell lines, confirming the induced high productivity phenotype, but also demonstrating the cell line/clone specificity of engineering effects.
机译:高通量siRNA筛选仅在最近才应用于细胞工厂,以鉴定能够将细胞推向所需表型的新型工程靶标。尽管存在用于模型生物(例如小鼠)的siRNA文库,但尚无CHO特异性文库可公开获得,这阻碍了该技术在CHO细胞上的应用。这些细胞的优化特别令人关注,因为它们是生产治疗性蛋白质的主要宿主。在这里,我们通过将小鼠全基因组siRNA文库应用于CHO细胞来执行跨物种方法,优化了悬浮培养细胞的实验方案,因为这是CHO细胞的工业实践,并开发了一种计算机方法来鉴定功能正常的siRNA。 ,这也揭示了使用跨物种库的局限性。通过这种方法,我们能够鉴定出几个基因,这些基因在敲除后可以提高初级筛选的总生产率。第二个筛选验证了其中两个基因Rad21和Chd4,它们的敲除已在其他CHO细胞系中进行了测试,证实了诱导的高生产力表型,但同时也证明了细胞系/克隆的工程效应特异性。

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