Department of Genetic Resources Technology, Faculty of Agriculture, Kyushu University, Fukuoka, 812-8581, Japan,
Cytotechnology. 2005 Jan;47(1-3):29-36. doi: 10.1007/s10616-005-3765-4.
The cell line D29, which was easily and rapidly established by the promoter-activated production and glutamine synthetase hybrid system, secreted recombinant human interleukin-6 (hIL-6) at a productivity rate of 39.5 mug 10(-6) cells day(-1), one of the highest reported levels worldwide. The productivity rate was about 130-fold higher than that of the cell line A7, which was established without both promoter activation and gene amplification. Although D29 cells had a high copy number and high mRNA level of the hIL-6 gene as well as a high secretion rate of hIL-6, large amounts of intracellular hIL-6 protein accumulated in D29 cells compared to A7 cells. Northern blotting analysis showed no change in the GRP78/BiP expression level in D29 cells. In contrast, an electrophoresis mobility shift assay revealed strong activation of NF-kappaB in D29 cells. These results suggest that large amounts of hIL-6 translated from large amounts of hIL-6 mRNA cause excess accumulation of intact hIL-6 in the endoplasmic reticulum (ER), and that subsequent negative feedback signals via the ER overload response inhibit hIL-6 protein secretion. To enhance the hIL-6 productivity rate of D29 cells by releasing the negative feedback signals, the effect of pyrrolidinedithiocarbamate, an inhibitor of NF-kappaB activation, was examined. Suppression of NF-kappaB activation in D29 cells produced a 25% augmentation of the hIL-6 productivity rate. Therefore, in highly productive cells like D29 cells, the release of negative feedback signals could increase the total amount of recombinant protein secretion.
细胞系 D29 通过启动子激活生产和谷氨酰胺合成酶杂交系统很容易且快速地建立,以 39.5 mug 10(-6)细胞天(-1)的生产率分泌重组人白细胞介素-6(hIL-6),这是全球报道的最高水平之一。该生产率比未经过启动子激活和基因扩增的细胞系 A7 高约 130 倍。尽管 D29 细胞具有高拷贝数和高 hIL-6 基因的 mRNA 水平以及 hIL-6 的高分泌率,但与 A7 细胞相比,D29 细胞中大量的细胞内 hIL-6 蛋白积累。Northern 印迹分析显示 D29 细胞中 GRP78/BiP 表达水平没有变化。相比之下,电泳迁移率变动分析显示 D29 细胞中 NF-kappaB 强烈激活。这些结果表明,大量从大量 hIL-6 mRNA 翻译而来的 hIL-6 导致内质网(ER)中完整 hIL-6 的过量积累,并且通过 ER 过载反应的后续负反馈信号抑制 hIL-6 蛋白分泌。为了通过释放负反馈信号来提高 D29 细胞的 hIL-6 生产率,研究了 NF-kappaB 激活抑制剂吡咯烷二硫代氨基甲酸盐的作用。D29 细胞中 NF-kappaB 激活的抑制作用产生了 hIL-6 生产率的 25%增加。因此,在像 D29 细胞这样的高产细胞中,释放负反馈信号可以增加重组蛋白分泌的总量。