A high‐yielding CHO transient system: Coexpression of genes encoding EBNA‐1 and GS enhances transient protein expression

Высокопродуктивная система транзиентной экспрессии в клетках CHO: коэкспрессия генов, кодирующих EBNA-1 и GS, повышает транзиентную экспрессию белка
William E. Holmes, Olalekan Daramola, Jessica Stevenson, Greg Dean, Diane Hatton, Gary Pettman, Ray Field
2013-10-08

CHO transient expression systemEBNA-1OriP plasmidglutamine synthetaserecombinant antibody production
An efficient rapid protein expression system is crucial to support early drug development. Transient gene expression is an effective route, and to facilitate the use of the same host cells as for subsequent stable cell line development, we have created a high-yielding Chinese hamster ovary (CHO) transient expression system. Suspension-adapted CHO-K1 host cells were engineered to express the gene encoding Epstein-Barr virus (EBV) nuclear antigen-1 (EBNA-1) with and without the coexpression of the gene for glutamine synthetase (GS). Analysis of the transfectants indicated that coexpression of EBNA-1 and GS enhanced transient expression of a recombinant antibody from a plasmid carrying an OriP DNA element compared to EBNA-1-only transfectants. This was confirmed with the retransfection of an EBNA-1-only cell line with a GS gene. The retransfected cell lines showed an increase in transient expression when compared with that of the EBNA-1-only parent. The transient expression process for the best CHO transient cell line was further developed to enhance protein expression and improve scalability by optimizing the transfection conditions and the cell culture process. This resulted in a scalable CHO transient expression system that is capable of expressing 2 g/L of recombinant proteins such as antibodies. This system can now rapidly provide gram amounts of recombinant antibody to supply preclinical development studies that has comparable product quality to antibody produced from a stably transfected CHO cell line.
1
A suspension-adapted CHO-K1 transient expression system was engineered using EBNA-1, with or without coexpression of glutamine synthetase (GS).
2
Antibodies produced by the transient system had product quality comparable to antibodies from stably transfected CHO cells, enabling rapid gram-scale preclinical supply.
3
Coexpression of EBNA-1 and GS enhanced transient recombinant antibody expression from plasmids containing an OriP DNA element compared with EBNA-1 alone.
4
Introducing GS into an EBNA-1-only CHO cell line reproduced the increase in transient protein expression, confirming GS’s contribution.
5
Optimization of transfection and cell-culture conditions produced a scalable CHO transient system expressing up to 2 g/L of recombinant proteins, including antibodies.

The engineered suspension-adapted CHO-K1 transient expression system coexpressing EBNA-1 and GS for recombinant protein production

The enhancement, scalability, and recombinant protein yield of transient expression achieved by EBNA-1/GS coexpression, including expression of recombinant antibodies from OriP-containing plasmids

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2013-10-08
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Authors
William E. Holmes
Olalekan Daramola
Jessica Stevenson
Greg Dean
Diane Hatton
Gary Pettman
Ray Field
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