Simple piggyBac transposon-based mammalian cell expression system for inducible protein production
Простая система экспрессии в клетках млекопитающих на основе транспозона piggyBac для индуцируемого получения белков
2013-03-08
SCID: 54.1/yf7d57yk
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doxycycline-inducible expressionlarge-scale protein productionmammalian cell culturespiggyBac transposonstable bulk cell cultures
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Abstract (AI)
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.
Key Findings
1
A piggyBac transposon system generates doxycycline-inducible, stably transfected mammalian cultures for large-scale protein production using a single transfection step.
2
The system functions in both adherent and suspension-adapted mammalian cell lines and produces highly uniform expression among clones.
3
The system supported large-scale production of an endoplasmic-reticulum fucosyltransferase and two potential anticancer therapeutics at 140–750 mg scale.
4
Under continuous doxycycline induction, protein expression remains stable for at least two months without drug selection.
5
Uniform expression enables stable bulk cultures without time-consuming cloning, including generation in 96-well format for protein-family screening.
Research Object
piggyBac transposon-based doxycycline-inducible mammalian cell expression system for large-scale protein production
Research Subject
stable, uniform, long-term inducible protein expression in adherent and suspension-adapted mammalian cell cultures, including bulk and 96-well formats
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2013-03-08
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