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Differential Protein Expression Induced by c-Myc Over-Expression: Proteomic Analysis of a CHO Cell Line with Increased Proliferation Capacity

机译:C-Myc过表达诱导的差异蛋白质表达:CHO细胞系蛋白质组学分析,增殖能力增加

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To examine the role of the transcription factor Myc in cell culture processes a stable adherent Chinese Hamster Ovary (CHO) cell line, under constitutive controlled over-expression of the human c-myc gene was produced (Ifandi and Al-Rubeai, 2003). A significant increase in proliferation and a reduction in serum dependency resulting from c-myc over-expression were observed. Although c-myc was responsible for the induction of higher apoptotic rate when compared with the control, the impact was negligible compared to the overall increase in proliferation capacity. A proteomic investigation identified over 100 protein spots on 2D-gel that exhibited notable expression alterations when compared to the wildtype CHO cell line. Based on mass spectrometry identification, some of the morphological changes and the increased proliferative capacity of the modified cell line could be explained. An up-regulation of nucleolin protein and ATP synthetase was associated to the higher proliferation rate. Annexin A2, involved in adhesion, was down-regulated which may explain why the modified cell line has a tendency to be less adherent. The down-regulation of F-actin capping protein, linked to the secretory pathway, verified the small reduction in productivity of recombinant human secreted alkaline phosphatase. This on going investigation has given us a better understanding of some of the factors involved in adherence, apoptosis, proliferation capacity and productivity. The study has also provided possible multiple cell engineering targets to improve suspension adaptation, proliferation capacity of industrially important cell lines.
机译:为了检查细胞培养的转录因子Myc的作用,在细胞培养过程中,在制备的本组成型控制过度表达中,在本组成型控制过度表达下,(Ifandi和Al-Rubeai,2003),稳定的粘附剂中国仓鼠卵巢(CHO)细胞系。观察到由C-MYC过表达引起的增殖的显着增加和血清依赖性的降低。虽然与对照相比,C-MYC对凋亡率更高的诱导率,但与扩散能力的总体增加相比,影响忽略不计。与野生型Cho细胞系相比,在2D-GEL上鉴定出超过100个蛋白质点的蛋白质组学研究,其表现出显着的表达改变。基于质谱鉴定,可以解释修饰细胞系的形态变化和增殖能力的一些形态变化。核仁蛋白和ATP合成酶的上调与较高的增殖速率有关。涉及粘附的吞并A2被下调,可以解释为什么修饰的细胞系具有不那么粘附的趋势。与分泌途径有关的F-actin封装蛋白的下调验证了重组人分泌碱性磷酸酶的生产率的小降低。在进行调查方面使我们更好地了解涉及依赖,细胞凋亡,增殖能力和生产力的一些因素。该研究还提供了多种细胞工程目标,以改善悬浮适应,工业上重要细胞系的增殖能力。

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