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Homologous Recombination-Independent Large Gene Cassette Knock-in in CHO Cells Using TALEN and MMEJ-Directed Donor Plasmids

机译:使用TALEN和MMEJ指导的供体质粒在CHO细胞中的同源重组独立的大基因盒式敲入。

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摘要

Gene knock-in techniques have rapidly evolved in recent years, along with the development and maturation of genome editing technology using programmable nucleases. We recently reported a novel strategy for microhomology-mediated end-joining-dependent integration of donor DNA by using TALEN or CRISPR/Cas9 and optimized targeting vectors, named PITCh (Precise Integration into Target Chromosome) vectors. Here we describe TALEN and PITCh vector-mediated integration of long gene cassettes, including a single-chain Fv-Fc (scFv-Fc) gene, in Chinese hamster ovary (CHO) cells, with comparison of targeting and cloning efficiency among several donor design and culture conditions. We achieved 9.6-kb whole plasmid integration and 7.6-kb backbone-free integration into a defined genomic locus in CHO cells. Furthermore, we confirmed the reasonable productivity of recombinant scFv-Fc protein of the knock-in cells. Using our protocol, the knock-in cell clones could be obtained by a single transfection and a single limiting dilution using a 96-well plate, without constructing targeting vectors containing long homology arms. Thus, the study described herein provides a highly practical strategy for gene knock-in of large DNA in CHO cells, which accelerates high-throughput generation of cell lines stably producing any desired biopharmaceuticals, including huge antibody proteins.
机译:近年来,基因敲入技术随着使用可编程核酸酶的基因组编辑技术的发展和成熟而迅速发展。我们最近报道了一种新的策略,通过使用TALEN或CRISPR / Cas9和优化的靶向载体,称为PITCh(精确整合入目标染色体)载体,对供体DNA进行微同源性介导的末端依赖依赖性整合。在这里,我们描述了TALEN和PITCh载体介导的长基因盒(包括单链Fv-Fc(scFv-Fc)基因)在中国仓鼠卵巢(CHO)细胞中的整合,并比较了多个供体设计中的靶向和克隆效率和文化条件。我们在CHO细胞中实现了9.6-kb的完整质粒整合和7.6-kb的无主链整合。此外,我们证实了敲入细胞的重组scFv-Fc蛋白的合理生产率。使用我们的方案,敲入细胞克隆可以通过单次转染和使用96孔板的有限稀释获得,而无需构建包含长同源臂的靶向载体。因此,本文所述的研究为CHO细胞中大DNA的基因敲入提供了高度实用的策略,其加速了稳定产生任何所需生物药物(包括巨大的抗体蛋白)的细胞系的高通量产生。

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