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Detailed understanding of enhanced specific productivity in Chinese hamster ovary cells at low culture temperature

机译:在低培养温度下提高中国仓鼠卵巢细胞比生产力的详细理解

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摘要

The specific productivity of tumor necrosis factor receptor-immunoglobulin G1 Fc fusion (TNFR-Fc) (q_(TNFR-Fc)) in Chinese hamster ovary (CHO) cells at 30°C was approximately 5-fold higher than that at 37°C. To investigate reasons for increased q_(TNFR-Fc) at low culture temperature, TNFR-Fc mRNA levels were determined by real-time PCR. It was found that like q_(TNFR-Fc), the relative TNFR-Fc mRNA level was increased by lowering culture temperature, and more importantly, the kinetics of the increase in TNFR-Fc mRNA levels were in accordance with the changes in q_(TNFR-Fc). The results demonstrated that the increased transcriptional level of TNFR-Fc was responsible for the increased q_(TNFR-Fc) at low culture temperature. Enhanced levels of mRNA could derive from increased gene copy number, improved mRNA stability, or enhanced transcriptional rate. There was not a big change of gene copy number by lowering culture temperature. The transcriptional rate of TNFR-Fc was slightly decreased at 30°C, compared to 37°C. However, mRNA stability of TNFR-Fc was significantly improved by lowering culture temperature. The half-life of TNFR-Fc mRNA was 5.55 h at 30°C, whereas that was 3.69 h at 37°C Taken together, the reasons for the increased q_(TNFR-Fc) in CHO cells at low culture temperature were mainly the enhanced TNFR-Fc mRNA levels, which resulted from the improved mRNA stability, rather than the changes in the gene copy number or the transcriptional rate.
机译:在30°C下中国仓鼠卵巢(CHO)细胞中肿瘤坏死因子受体-免疫球蛋白G1 Fc融合蛋白(TNFR-Fc)(q_(TNFR-Fc))的比生产率比37°C高约5倍。为了研究在低培养温度下q_(TNFR-Fc)增加的原因,通过实时PCR测定TNFR-Fc mRNA水平。已经发现,像q_(TNFR-Fc)一样,相对TNFR-Fc mRNA水平通过降低培养温度而增加,更重要的是,TNFR-Fc mRNA水平增加的动力学与q_(TNFR-Fc)的变化一致。 TNFR-Fc)。结果表明,在低培养温度下,TNFR-Fc的转录水平升高是q_(TNFR-Fc)升高的原因。 mRNA含量的提高可能来自基因拷贝数的增加,mRNA稳定性的提高或转录速率的提高。通过降低培养温度,基因拷贝数没有太大变化。与37°C相比,在30°C时TNFR-Fc的转录速率略有降低。然而,通过降低培养温度,TNFR-Fc的mRNA稳定性显着提高。 TNFR-Fc mRNA的半衰期在30°C下为5.55 h,而在37°C下为3.69 h。总的来说,低培养温度下CHO细胞q_(TNFR-Fc)增加的原因主要是增强的TNFR-Fc mRNA水平,这是由于提高了mRNA的稳定性,而不是基因拷贝数或转录速率的变化。

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