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Uncovering Methods for the Prevention of Protein Aggregation and Improvement of Product Quality in a Transient Expression System

机译:瞬时表达系统中防止蛋白质聚集和提高产品质量的发现方法

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Mammalian expression systems are used routinely for the production of recombinant proteins as therapeutic molecules as well as research tools. Transient expression has become increasingly popular in recent years due to its rapid timeline and improvements in expression level. While improvements to transient expression systems have focused mainly on the level of protein expression, the aspect of protein quality has received little attention. The removal of undesirable products, such as aggregation, depends primarily on purification, requiring additional cumbersome steps, which can lead to a lower product yield and longer timelines. In this study, we show that reducing the level of transcription by transfecting at a lower gene dose improves the quality of secreted molecules prone to aggregation. For gene dosing to have this effect, it is critical for the carrier DNA to be an empty vector containing the same elements as the gene containing plasmid. This approach can be used in combination with a temperature shift to hypothermic conditions during production to enhance the effect. The observed improvements not only minimized aggregation levels, but also generated products with overall superior quality, including more homogeneous signal peptide cleavage and N-linked glycosylation profiles. These techniques have produced a similar improvement in product quality with a variety of other molecules, suggesting that this may be a general approach to enhance product quality from transient expression systems. (c) 2014 American Institute of Chemical Engineers Biotechnol. Prog., 31:258-267, 2015
机译:哺乳动物表达系统通常用于生产重组蛋白作为治疗分子以及研究工具。瞬态表达由于其快速的时间表和表达水平的提高,近年来变得越来越流行。尽管对瞬时表达系统的改进主要集中在蛋白质表达水平上,但蛋白质质量方面却很少受到关注。去除不希望的产物(例如聚集体)主要取决于纯化,需要额外的繁琐步骤,这可能导致较低的产物收率和较长的时间表。在这项研究中,我们表明通过以较低的基因剂量进行转染来降低转录水平,可以提高易于聚集的分泌分子的质量。对于具有这种作用的基因给药,至关重要的是使载体DNA为空载体,其载体与含基因的质粒具有相同的元件。该方法可与生产过程中温度转移至低温条件结合使用,以增强效果。所观察到的改进不仅使聚集水平最小化,而且还产生了具有总体优异质量的产品,包括更均一的信号肽裂解和N-联糖基化谱。这些技术与多种其他分子一起在产品质量方面产生了类似的改善,表明这可能是从瞬时表达系统提高产品质量的通用方法。 (c)2014美国化学工程师学会生物技术学会。 Prog。,31:258-267,2015

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