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An efficient and targeted gene integration system for high-level antibody expression.

机译:一个高效且有针对性的基因整合系统,用于高水平的抗体表达。

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摘要

Random integration linking genomic amplification has been used to generate desired cell lines for stable and high-level expressing recombinant antibodies. But this technique is laborious, and the expression level is unpredictable due to position effects. Here, we have constructed a cell-vector system for high-level antibody expression using an FRT/FLP strategy to overcome position effects. The key is to target the FRT sequence to chromosomal locations where there is a high rate of transcription and gene amplification, and the amplified genes can be maintained. To screen desired loci with high transcriptional activity and amplifiable capacity, dual weakened markers (selectable galactosidase and amplifiable dihydrofolate reductase, DHFR) and the FRT sequence were synchronously cloned into a plasmid. After transfection of a Chinese hamster ovary host cell line with this plasmid, we selected 20 candidate cell lines from 721 individual clones. An antibody gene-targeting vector carrying an FRT-fused hygromycin gene was constructed to target antibody genes into the chromosomal FRT site by FLP recombinase. Three out of 20 cell lines can be used as host cells for site-specific recombination. By using southern blot and fluorescence in situ hybridization (FISH), a candidate engineered cell line, number 37, was chosen. It contains a single FRT-tagged locus in its genome. FISH analysis indicated that the antibody genes were all located at the original FRT-tagged locus in the genome of the gene-targeted and gene-amplified cell lines. Three kinds of recombinant antibodies were successfully expressed in candidate cell line 37. The highest producers produced more than 200 mug/ml of the antibody in 6 days of continuous culture in a spinner flask.
机译:连接基因组扩增的随机整合已被用于产生用于稳定和高水平表达重组抗体的所需细胞系。但是该技术费力,并且由于位置效应,表达水平是不可预测的。在这里,我们使用FRT / FLP策略构建了用于高水平抗体表达的细胞载体系统,以克服位置效应。关键是将FRT序列靶向到转录和基因扩增率高的染色体位置,并且可以维持扩增的基因。为了筛选具有高转录活性和可扩增能力的所需基因座,将双重弱标记(选择性半乳糖苷酶和可扩增二氢叶酸还原酶,DHFR)和FRT序列同步克隆到质粒中。用该质粒转染中国仓鼠卵巢宿主细胞系后,我们从721个单独的克隆中选择了20个候选细胞系。构建携带FRT融合潮霉素基因的抗体基因靶向载体,以通过FLP重组酶将抗体基因靶向染色体FRT位点。 20个细胞系中有3个可以用作宿主细胞进行位点特异性重组。通过使用Southern印迹和荧光原位杂交(FISH),选择了候选工程细胞系37号。它的基因组中包含一个带有FRT标签的基因座。 FISH分析表明,抗体基因全部位于基因靶向和基因扩增的细胞系基因组中的原始FRT标签位点。在候选细胞系37中成功表达了三种重组抗体。在旋转瓶中连续培养6天,最高产量的抗体生产了200杯/毫升以上的抗体。

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