Development of a highly-efficient CHO cell line generation system with engineered SV40E promoter

中国仓鼠卵巢细胞 细胞培养 生物 谷氨酰胺合成酶 转染 分子生物学 报告基因 基因表达 发起人 人口 细胞生物学 基因 遗传学 谷氨酰胺 氨基酸 人口学 社会学
作者
Lianchun Fan,Ibrahim Kadura,Lara E. Krebs,Jeffery L. Larson,Daniel M. Bowden,Christopher C. Frye
出处
期刊:Journal of Biotechnology [Elsevier BV]
卷期号:168 (4): 652-658 被引量:40
标识
DOI:10.1016/j.jbiotec.2013.08.021
摘要

Chinese hamster ovary (CHO) cells have been one of the most widely used host cells for the manufacture of therapeutic recombinant proteins. An effective and efficient clinical cell line development process, which could quickly identify those rare, high-producing cell lines among a large population of low and non-productive cells, is of considerable interest to speed up biological drug development. In the glutamine synthetase (GS)-CHO expression system, selection of top-producing cell lines is based on controlling the balance between the expression level of GS and the concentration of its specific inhibitor, l-methionine sulfoximine (MSX). The combined amount of GS expressed from plasmids that have been introduced through transfection and the endogenous CHO GS gene determine the stringency and efficiency of selection. Previous studies have shown significant improvement in selection stringency by using GS-knockout CHO cells, which eliminate background GS expression from the endogenous GS gene in CHOK1SV cells. To further improve selection stringency, a series of weakened SV40E promoters have been generated and used to modulate plasmid-based GS expression with the intent of manipulating GS-CHO selection, finely adjusting the balance between GS expression and GS inhibitor (MSX) levels. The reduction of SV40E promoter activities have been confirmed by TaqMan RT-PCR and GFP expression profiling. Significant productivity improvements in both bulk culture and individual clonal cell line have been achieved with the combined use of GS-knockout CHOK1SV cells and weakened SV40E promoters driving GS expression in the current cell line generation process. The selection stringency was significantly increased, as indicated by the shift towards higher distribution of producing-cell populations, even with no MSX added into cell culture medium. The potential applications of weakened SV40E promoter and GS-knockout cells in development of targeted integration and transient CHO expression systems are also discussed.
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