Synthetic Biology Center, Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Biomedicine Design, Pfizer Inc, Cambridge, MA 02139, USA.
Nucleic Acids Res. 2018 May 4;46(8):4072-4086. doi: 10.1093/nar/gky216.
Engineering mammalian cell lines that stably express many transgenes requires the precise insertion of large amounts of heterologous DNA into well-characterized genomic loci, but current methods are limited. To facilitate reliable large-scale engineering of CHO cells, we identified 21 novel genomic sites that supported stable long-term expression of transgenes, and then constructed cell lines containing one, two or three 'landing pad' recombination sites at selected loci. By using a highly efficient BxB1 recombinase along with different selection markers at each site, we directed recombinase-mediated insertion of heterologous DNA to selected sites, including targeting all three with a single transfection. We used this method to controllably integrate up to nine copies of a monoclonal antibody, representing about 100 kb of heterologous DNA in 21 transcriptional units. Because the integration was targeted to pre-validated loci, recombinant protein expression remained stable for weeks and additional copies of the antibody cassette in the integrated payload resulted in a linear increase in antibody expression. Overall, this multi-copy site-specific integration platform allows for controllable and reproducible insertion of large amounts of DNA into stable genomic sites, which has broad applications for mammalian synthetic biology, recombinant protein production and biomanufacturing.
工程哺乳动物细胞系,使其稳定表达许多转基因,需要将大量的异源 DNA 精确插入到特征明确的基因组位点,但目前的方法有限。为了促进 CHO 细胞的可靠大规模工程改造,我们鉴定了 21 个新的基因组位点,这些位点支持转基因的稳定长期表达,然后在选定的位点构建包含一个、两个或三个“着陆垫”重组位点的细胞系。通过使用高效的 BxB1 重组酶和每个位点的不同选择标记,我们将异源 DNA 的重组酶介导插入导向选定的位点,包括用单次转染靶向所有三个位点。我们使用这种方法可控地整合多达九个单克隆抗体拷贝,代表 21 个转录单位中约 100kb 的异源 DNA。由于整合是靶向预先验证的位点,重组蛋白表达在数周内保持稳定,并且整合有效载荷中抗体盒的额外拷贝导致抗体表达呈线性增加。总的来说,这种多拷贝的位点特异性整合平台允许将大量的 DNA 可控且可重复地插入到稳定的基因组位点,这为哺乳动物合成生物学、重组蛋白生产和生物制造提供了广泛的应用。