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Genome-scale RNA interference screen identifies antizyme 1(OAZ1) as a target for improvement of recombinant protein production in mammalian cells

机译:基因组规模的RNA干扰筛选确定抗酶1(OAZ1)为改善哺乳动物细胞中重组蛋白生产的目标

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摘要

For the purpose of improving recombinant protein production from mammalian cells, an unbiased, high-throughput whole-genome RNA interference screen was conducted using human embryonic kidney 293 (HEK 293) cells expressing firefly luciferase. 21,585 human genes were individually silenced with three different siRNAs for each gene. The screen identified 56 genes that led to the greatest improvement in luciferase expression. These genes were found to be included in several pathways involved in spliceosome formation and mRNA processing, transcription, metabolic processes, transport and protein folding. The 10 genes that most enhanced protein expression when down regulated, were further confirmed by measuring the effect of their silencing on the expression of three additional recombinant proteins.Among the confirmed genes, OAZ1- the gene encoding the ornithine decarboxylase antizyme1- was selected for detailed investigation, since its silencing improved the reporter protein production without affecting cell viability. Silencing OAZ1 caused an increase of the ornithine decarboxylase enzyme and the cellular levels of putrescine and spermidine; an indication that increased cellular polyamines enhances luciferase expression without affecting its transcription. The study shows that OAZ1 is a novel target for improving expression of recombinant proteins. The genome-scale screening performed in this work can establish the foundation for targeted design of an efficient mammalian cell platform for various biotechnological applications.
机译:为了改善从哺乳动物细胞产生重组蛋白的目的,使用表达萤火虫荧光素酶的人胚胎肾293(HEK 293)细胞进行了无偏倚,高通量的全基因组RNA干扰筛选。使用每种基因的三个不同siRNA分别沉默21,585个人类基因。筛选确定了导致荧光素酶表达最大改善的56个基因。发现这些基因被包括在与剪接体形成和mRNA加工,转录,代谢过程,转运和蛋白质折叠有关的几种途径中。通过下调沉默水平对另外三种重组蛋白表达的影响,进一步确认了10个表达增强的基因,进一步证实了这些沉默。在确定的基因中,选择了编码鸟氨酸脱羧酶抗酶1的基因OAZ1-作为详细的进行了研究,因为它的沉默提高了报告蛋白的产量,却不影响细胞的活力。沉默OAZ1会导致鸟氨酸脱羧酶的增加以及腐胺和亚精胺的细胞水平升高;表明增加的细胞多胺可增强萤光素酶表达而不会影响其转录。研究表明,OAZ1是改善重组蛋白表达的新靶标。在这项工作中进行的基因组规模筛选可以为针对各种生物技术应用的有效哺乳动物细胞平台的靶向设计奠定基础。

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