Department of Biochemistry, University of Toronto, Toronto, ON, Canada M5S 1A8.
Proc Natl Acad Sci U S A. 2013 Mar 26;110(13):5004-9. doi: 10.1073/pnas.1218620110. Epub 2013 Mar 8.
Reported here is a piggyBac transposon-based expression system for the generation of doxycycline-inducible, stably transfected mammalian cell cultures for large-scale protein production. The system works with commonly used adherent and suspension-adapted mammalian cell lines and requires only a single transfection step. Moreover, the high uniform expression levels observed among clones allow for the use of stable bulk cell cultures, thereby eliminating time-consuming cloning steps. Under continuous doxycycline induction, protein expression levels have been shown to be stable for at least 2 mo in the absence of drug selection. The high efficiency of the system also allows for the generation of stable bulk cell cultures in 96-well format, a capability leading to the possibility of generating stable cell cultures for entire families of membrane or secreted proteins. Finally, we demonstrate the utility of the system through the large-scale production (140-750 mg scale) of an endoplasmic reticulum-resident fucosyltransferase and two potential anticancer protein therapeutic agents.
本文介绍了一种基于 piggyBac 转座子的表达系统,可用于生成强力霉素诱导的、稳定转染的哺乳动物细胞培养物,以进行大规模蛋白质生产。该系统适用于常用的贴壁和悬浮适应的哺乳动物细胞系,仅需单次转染步骤。此外,克隆之间观察到的高均匀表达水平允许使用稳定的大量细胞培养物,从而消除了耗时的克隆步骤。在持续强力霉素诱导下,在没有药物选择的情况下,至少在 2 个月内观察到蛋白表达水平稳定。该系统的高效率还允许在 96 孔格式中生成稳定的大量细胞培养物,这一能力使得能够为整个膜或分泌蛋白家族生成稳定的细胞培养物。最后,我们通过大规模生产(140-750 毫克规模)内质网驻留岩藻糖基转移酶以及两种潜在的抗癌蛋白治疗剂,展示了该系统的实用性。