Austrian Center of Industrial Biotechnology GmbH, Vienna, Austria.
Department of Biotechnology, Institute of Animal Cell Technology and Systems Biology, University of Natural Resources and Life Sciences, Vienna, Austria.
Biotechnol Bioeng. 2023 Sep;120(9):2403-2418. doi: 10.1002/bit.28382. Epub 2023 Apr 14.
The integration of a transgene expression construct into the host genome is the initial step for the generation of recombinant cell lines used for biopharmaceutical production. The stability and level of recombinant gene expression in Chinese hamster ovary (CHO) can be correlated to the copy number, its integration site as well as the epigenetic context of the transgene vector. Also, undesired integration events, such as concatemers, truncated, and inverted vector repeats, are impacting the stability of recombinant cell lines. Thus, to characterize cell clones and to isolate the most promising candidates, it is crucial to obtain information on the site of integration, the structure of integrated sequence and the epigenetic status. Current sequencing techniques allow to gather this information separately but do not offer a comprehensive and simultaneous resolution. In this study, we present a fast and robust nanopore Cas9-targeted sequencing (nCats) pipeline to identify integration sites, the composition of the integrated sequence as well as its DNA methylation status in CHO cells that can be obtained simultaneously from the same sequencing run. A Cas9-enrichment step during library preparation enables targeted and directional nanopore sequencing with up to 724× median on-target coverage and up to 153 kb long reads. The data generated by nCats provides sensitive, detailed, and correct information on the transgene integration sites and the expression vector structure, which could only be partly produced by traditional Targeted Locus Amplification-seq data. Moreover, with nCats the DNA methylation status can be analyzed from the same raw data without prior DNA amplification.
将转基因表达构建体整合到宿主基因组中是用于生物制药生产的重组细胞系产生的初始步骤。中国仓鼠卵巢 (CHO) 中转基因的稳定性和表达水平与其拷贝数、整合位点以及转基因载体的表观遗传背景有关。此外,不期望的整合事件,如串联、截短和反向载体重复,会影响重组细胞系的稳定性。因此,为了表征细胞克隆并分离最有前途的候选者,获得整合位点、整合序列结构和表观遗传状态的信息至关重要。目前的测序技术可以分别获取这些信息,但不能提供全面和同时的分辨率。在这项研究中,我们提出了一种快速而稳健的纳米孔 Cas9 靶向测序 (nCats) 方法,可同时从同一测序运行中鉴定 CHO 细胞中转基因的整合位点、整合序列的组成及其 DNA 甲基化状态。文库制备过程中的 Cas9 富集步骤可实现靶向和定向纳米孔测序,平均靶向覆盖率高达 724×,最长读长可达 153kb。nCats 生成的数据可提供有关转基因整合位点和表达载体结构的敏感、详细和准确信息,而传统的靶向基因座扩增测序 (Targeted Locus Amplification-seq) 数据只能部分提供这些信息。此外,使用 nCats 可以从同一原始数据中分析 DNA 甲基化状态,而无需事先进行 DNA 扩增。