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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Epigenetic regulatory elements: Recent advances in understanding their mode of action and use for recombinant protein production in mammalian cells
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Epigenetic regulatory elements: Recent advances in understanding their mode of action and use for recombinant protein production in mammalian cells

机译:表观遗传调控元件:了解其作用方式和用于哺乳动物细胞中重组蛋白生产的最新进展

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摘要

Successful generation of high producing cell lines requires the generation of cell clones expressing the recombinant protein at high levels and the characterization of the clones' ability to maintain stable expression levels. The use of cis-acting epigenetic regulatory elements that improve this otherwise long and uncertain process has revolutionized recombinant protein production. Here we review and discuss new insights into the molecular mode of action of the matrix attachment regions (MARs) and ubiquitously-acting chromatin opening elements (UCOEs), i.e. cis-acting elements, and how these elements are being used to improve recombinant protein production. These elements can help maintain the chromatin environment of the transgene genomic integration locus in a transcriptionally favorable state, which increases the numbers of positive clones and the transgene expression levels. Moreover, the high producing clones tend to be more stable in long-term cultures even in the absence of selection pressure. Therefore, by increasing the probability of isolating a high producing clone, as well as by increasing transcription efficiency and stability, these elements can significantly reduce the time and cost required for producing large quantities of recombinant proteins.
机译:成功生成高产细胞系需要生成高水平表达重组蛋白的细胞克隆,并表征克隆保持稳定表达水平的能力。顺式作用表观遗传调控元件的使用改善了这种原本漫长而不确定的过程,彻底改变了重组蛋白的生产。在这里,我们审查和讨论对基质附着区(MARs)和普遍起作用的染色质开放元件(UCOEs)的分子作用方式的新见解,即顺式作用元件,以及这些元件如何用于改善重组蛋白的生产。这些元件可以帮助将转基因基因组整合基因座的染色质环境维持在转录有利状态,从而增加阳性克隆的数量和转基因表达水平。而且,即使在没有选择压力的情况下,高产克隆在长期培养中也趋于更稳定。因此,通过增加分离高产克隆的可能性,以及通过增加转录效率和稳定性,这些元件可以显着减少生产大量重组蛋白所需的时间和成本。

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