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抗体工程以提高可制造性。

Antibody engineering to improve manufacturability.

作者信息

Wijesuriya Sujeewa D, Pongo Elizabeth, Tomic Milan, Zhang Fangjiu, Garcia-Rodriquez Consuelo, Conrad Fraser, Farr-Jones Shauna, Marks James D, Horwitz Arnold H

机构信息

Ology Bioservices, Inc, 626 Bancroft, Suite D, Berkeley, CA, 94710, USA.

Maverick Therapeutics, Inc, 3260B Bayshore Blvd, Brisbane, CA, 94005, USA.

出版信息

Protein Expr Purif. 2018 Sep;149:75-83. doi: 10.1016/j.pep.2018.04.003. Epub 2018 Apr 12.

Abstract

Expression variation among antibodies produced by stably transfected Chinese Hamster Ovary (CHO) cells is well established. While developing CHO-K1 cell lines, we encountered a human monoclonal antibody, mAb B-c, with severe manufacturability issues, including very poor expression and high levels of heavy chain (HC) dimer and high molecular weight aggregates. Using transient expression in CHO-K1 cells, we identified light chain (LC) as the source of the manufacturability issues for this antibody. While other antibodies achieved optimal expression at 1:1 or 2:1 LC to HC ratios, mAb B-c required up to a 6:1 LC:HC for maximal expression, which was still significantly lower than that for other tested antibodies. To overcome the manufacturability issues, LC shuffling was performed with the original HC to select antibodies with unique LCs which retained acceptable binding affinities. Transient CHO-K1 expression evaluation of the new LCs co-expressed with the original HC identified antibodies with high expression at a 1:1 or 2:1 LC:HC; the expression levels of these new antibodies were comparable to those of other well-expressed antibodies. Expression of these new antibodies in stably transfected CHO-K1 cells confirmed these results. In addition, antibodies containing the new LCs had very low levels of high molecular weight aggregates and HC dimer. These results demonstrate that certain antibody manufacturability issues can be attributed to LC and that engineering antibodies by pairing HCs with alternate LCs can improve antibody expression and product quality while maintaining or improving affinity.

摘要

稳定转染的中国仓鼠卵巢(CHO)细胞产生的抗体之间的表达差异已得到充分证实。在开发CHO-K1细胞系时,我们遇到了一种人单克隆抗体mAb B-c,它存在严重的可生产性问题,包括表达非常低、重链(HC)二聚体水平高以及高分子量聚集体含量高。通过在CHO-K1细胞中进行瞬时表达,我们确定轻链(LC)是该抗体可生产性问题的根源。其他抗体在轻链与重链比例为1:1或2:1时可实现最佳表达,而mAb B-c需要高达6:1的轻链:重链比例才能达到最大表达,且仍显著低于其他测试抗体。为了克服可生产性问题,我们将原始重链与轻链进行改组,以选择具有独特轻链且保留可接受结合亲和力的抗体。对与原始重链共表达的新轻链进行CHO-K1瞬时表达评估,鉴定出在轻链:重链比例为1:1或2:1时具有高表达的抗体;这些新抗体的表达水平与其他表达良好的抗体相当。在稳定转染的CHO-K1细胞中表达这些新抗体证实了这些结果。此外,含有新轻链的抗体的高分子量聚集体和重链二聚体水平非常低。这些结果表明,某些抗体的可生产性问题可归因于轻链,并且通过将重链与替代轻链配对来改造抗体可以在保持或提高亲和力的同时改善抗体表达和产品质量。

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