Peng Lin, Yu Xiao, Li Chengyuan, Cai Yanfei, Chen Yun, He Yang, Yang Jianfeng, Jin Jian, Li Huazhong
a The Key Laboratory of Industrial Biotechnology , Ministry of Education, School of Biotechnology, Jiangnan University , Wuxi , China.
b Laboratory of Molecular Pharmacology , School of Pharmaceutical Sciences, Jiangnan University , Wuxi , China.
Bioengineered. 2016 Apr;7(3):189-97. doi: 10.1080/21655979.2016.1176656. Epub 2016 Apr 26.
Signal peptides play an important role in directing and efficiently transporting secretory proteins to their proper locations in the endoplasmic reticulum of mammalian cells. The aim of this study was to enhance the expression of recombinant coagulation factor VII (rFVII) in CHO cells by optimizing the signal peptides and type of fed-batch culture medium used. Five sub-clones (O2, I3, H3, G2 and M3) with different signal peptide were selected by western blot (WB) analysis and used for suspension culture. We compared rFVII expression levels of 5 sub-clones and found that the highest rFVII expression level was obtained with the IgK signal peptide instead of Ori, the native signal peptide of rFVII. The high protein expression of rFVII with signal peptide IgK was mirrored by a high transcription level during suspension culture. After analyzing culture and feed media, the combination of M4 and F4 media yielded the highest rFVII expression of 20 mg/L during a 10-day suspension culture. After analyzing cell density and cell cycle, CHO cells feeding by F4 had a similar percentage of cells in G0/G1 and a higher cell density compared to F2 and F3. This may be the reason for high rFVII expression in M4+F4. In summary, rFVII expression was successfully enhanced by optimizing the signal peptide and fed-batch medium used in CHO suspension culture. Our data may be used to improve the production of other therapeutic proteins in fed-batch culture.
信号肽在将分泌蛋白定向并高效转运至哺乳动物细胞内质网的适当位置中发挥着重要作用。本研究的目的是通过优化信号肽和分批补料培养基的类型来提高重组凝血因子VII(rFVII)在CHO细胞中的表达。通过蛋白质免疫印迹(WB)分析选择了五个具有不同信号肽的亚克隆(O2、I3、H3、G2和M3)并用于悬浮培养。我们比较了这5个亚克隆的rFVII表达水平,发现使用IgK信号肽而非rFVII的天然信号肽Ori可获得最高的rFVII表达水平。在悬浮培养期间,具有信号肽IgK的rFVII的高蛋白质表达反映在高转录水平上。在分析了基础培养基和补料培养基后,M4和F4培养基的组合在10天的悬浮培养期间产生了最高的rFVII表达量,为20mg/L。在分析细胞密度和细胞周期后,与F2和F3相比,用F4补料的CHO细胞在G0/G1期的细胞百分比相似且细胞密度更高。这可能是M4+F4中rFVII表达量高的原因。总之,通过优化CHO悬浮培养中使用的信号肽和分批补料培养基,成功提高了rFVII的表达。我们的数据可用于改善分批补料培养中其他治疗性蛋白质的生产。