Department of Life Sciences, Imperial College London, London, UK.
Centre for Synthetic Biology and Innovation, Imperial College London, London, UK.
Biotechnol Bioeng. 2018 Feb;115(2):512-518. doi: 10.1002/bit.26456. Epub 2017 Nov 16.
Transient gene expression (TGE) is a methodology employed in bioprocessing for the fast provision of recombinant protein material. Mild hypothermia is often introduced to overcome the low yield typically achieved with TGE and improve specific protein productivity. It is therefore of interest to examine the impact of mild hypothermic temperatures on both the yield and quality of transiently expressed proteins and the relationship to changes in cellular processes and metabolism. In this study, we focus on the ability of a Chinese hamster ovary cell line to galactosylate a recombinant monoclonal antibody (mAb) product. Through experimentation and flux balance analysis, our results show that TGE in mild hypothermic conditions led to a 76% increase in q compared to TGE at 36.5°C in our system. This increase is accompanied by increased consumption of nutrients and amino acids, together with increased production of intracellular nucleotide sugar species, and higher rates of mAb galactosylation, despite a reduced rate of cell growth. The reduction in biomass accumulation allowed cells to redistribute their energy and resources toward mAb synthesis and Fc-glycosylation. Interestingly, the higher capacity of cells to galactosylate the recombinant product in TGE at 32°C appears not to have been assisted by the upregulation of galactosyltransferases (GalTs), but by the increased expression of N-acetylglucosaminyltransferase II (GnTII) in this cell line, which facilitated the production of bi-antennary glycan structures for further processing.
瞬时基因表达(TGE)是生物加工中用于快速提供重组蛋白材料的一种方法。通常引入轻度低温来克服 TGE 通常达到的低产量并提高特定蛋白质的生产力。因此,研究轻度低温对瞬时表达蛋白的产量和质量的影响以及与细胞过程和代谢变化的关系很有意义。在这项研究中,我们专注于中国仓鼠卵巢细胞系将重组单克隆抗体(mAb)产品半乳糖基化的能力。通过实验和通量平衡分析,我们的结果表明,与 36.5°C 下的 TGE 相比,我们的系统中 TGE 在轻度低温条件下导致 q 值增加了 76%。这种增加伴随着营养物质和氨基酸消耗的增加,以及细胞内核苷酸糖种类的产生增加,以及 mAb 半乳糖基化的速率增加,尽管细胞生长速度降低。生物量积累的减少使细胞能够将其能量和资源重新分配到 mAb 合成和 Fc-糖基化上。有趣的是,在 32°C 下 TGE 中细胞对半乳糖化重组产物的更高能力似乎不是通过上调半乳糖基转移酶(GalTs)来辅助的,而是通过该细胞系中 N-乙酰氨基葡萄糖基转移酶 II(GnTII)的表达增加来辅助的,这有利于进一步加工的双触角聚糖结构的产生。