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Erythropoietin enhancer stimulates production of a recombinant protein by Chinese hamster ovary (CHO) cells under hypoxic condition

机译:促红细胞生成素增强剂在缺氧条件下刺激中国仓鼠卵巢(CHO)细胞产生重组蛋白

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摘要

Oxygen is a limiting nutrient in animal cell culture and its supply is still worthy of improvement for production of useful proteins with a high efficiency. From a different point of view, development of the system by which a high productivity can be maintained even under hypoxic condition as well as under normoxic condition may be important. A number of hypoxia-inducible genes have been found in eucaryotic cells and the induction in most cases, if not all, is due to hypoxic activation of the gene transcription. Transcription of erythropoietin gene is highly hypoxia-inducible and the induction is achieved by binding of a protein, which is widely distributed in animal cells, to a short DNA stretch (erythropoietin enhancer) in the 3′ flanking region of erythropoietin gene. Using a hepatoma cell line (Hep3B) that produces the endogenous erythropoietin in an oxygen-dependent manner and Chinese hamster ovary cells that have been widely used for production of recombinant proteins, we show that, under hypoxic condition, the erythropoietin enhancer can activate not only the promoter of erythropoietin gene but also promoters of cytomegalovirus early genes and eucaryotic polypeptide chain elongation factor gene, both of which are very active in animal cells under normoxic condition.
机译:氧气是动物细胞培养中的限制性营养素,其供应仍然值得改进,以高效地生产有用的蛋白质。从不同的角度来看,即使在低氧条件下也可在常氧条件下维持高生产率的系统的开发可能很重要。在真核细胞中发现了许多低氧诱导基因,在大多数情况下,即使不是全部,其诱导是由于基因转录的低氧激活。促红细胞生成素基因的转录是高度缺氧诱导的,并且诱导是通过将在动物细胞中广泛分布的蛋白质与促红细胞生成素基因的3'侧翼区域中的短DNA延伸(促红细胞生成素增强子)结合而实现的。使用以氧依赖性方式产生内源性促红细胞生成素的肝癌细胞系(Hep3B)和已广泛用于生产重组蛋白的中国仓鼠卵巢细胞,我们表明,在缺氧条件下,促红细胞生成素增强剂不仅可以激活促红细胞生成素基因的启动子,以及巨细胞病毒早期基因和真核多肽链延长因子基因的启动子,它们在常氧条件下在动物细胞中都非常活跃。

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