Process Development Department, Merck Biodevelopment, Martillac, France; Univ. Bordeaux, CNRS, Bordeaux INP, CBMN, UMR 5248, Pessac, France.
Process Development Department, Merck Biodevelopment, Martillac, France.
J Biotechnol. 2023 Jun 10;369:43-54. doi: 10.1016/j.jbiotec.2023.05.001. Epub 2023 May 4.
Chinese Hamster Ovary cells have been widely used as host cells for production of recombinant therapeutic molecules. Cell line development is a decisive step, which must be carried out with an efficient process. In particular, degree of selection stringency is an important parameter for identification of rare, high-producing cell lines. In the CHOZN® CHO K1 platform, selection of top-producing clones is based on puromycin resistance, whose expression is driven by Simian Virus 40 Early (SV40E) promoter. In this study, novel promoters have been identified to drive expression of selection marker. Decrease of transcriptional activity compared to SV40E promoter was confirmed by RT-qPCR. Selection stringency was increased, as seen by decreased surviving rate of transfected mini-pools and longer recovery duration of transfected bulk pools. Several promoters led to a 1.5-fold increase of maximum titer and a 1.3-fold increase of mean specific productivity of the monoclonal antibody over the clone generation. Expression level was maintained stable over long term cultivation. Finally, productivity increase was confirmed on several monoclonal antibodies and fusion proteins. Lowering the strength of promoter for expression of selective pressure resistance is an efficient strategy to increase selection stringency, which can be applied on industrial CHO-based cell line development platforms.
中国仓鼠卵巢细胞已被广泛用作生产重组治疗分子的宿主细胞。细胞系开发是一个决定性的步骤,必须采用高效的流程进行。特别是,选择严格程度是鉴定稀有、高产细胞系的重要参数。在 CHOZN® CHO K1 平台中,高产克隆的选择基于嘌呤霉素抗性,其表达由猴病毒 40 早期(SV40E)启动子驱动。在这项研究中,已经确定了新型启动子来驱动选择标记的表达。与 SV40E 启动子相比,转录活性的降低通过 RT-qPCR 得到了证实。通过转染 mini-pool 的存活率降低和转染 bulk pool 的恢复时间延长,选择严格性得到了提高。几种启动子使单克隆抗体的最大滴度提高了 1.5 倍,比克隆代的平均比生产率提高了 1.3 倍。在长期培养中,表达水平保持稳定。最后,在几种单克隆抗体和融合蛋白上证实了生产率的提高。降低表达选择压力抗性的启动子强度是提高选择严格性的有效策略,可应用于工业 CHO 为基础的细胞系开发平台。