Dhiman Heena, Campbell Marguerite, Melcher Michael, Smith Kevin D, Borth Nicole
University of Natural Resources and Life Sciences, Vienna, Austria.
Austrian Centre of Industrial Biotechnology, Vienna, Austria.
Comput Struct Biotechnol J. 2020 Nov 12;18:3632-3648. doi: 10.1016/j.csbj.2020.11.008. eCollection 2020.
Chinese Hamster Ovary (CHO) cell lines are considered to be the preferred platform for the production of biotherapeutics, but issues related to expression instability remain unresolved. In this study, we investigated potential causes for an unstable phenotype by comparing cell lines that express stably to such that undergo loss in titer across 10 passages. Factors related to transgene integrity and copy number as well as the genomic profile around the integration sites were analyzed. Horizon Discovery CHO-K1 (HD-BIOP3) derived production cell lines selected for phenotypes with low, medium or high copy number, each with stable and unstable transgene expression, were sequenced to capture changes at genomic and transcriptomic levels. The exact sites of the random integration events in each cell line were also identified, followed by profiling of the genomic, transcriptomic and epigenetic patterns around them. Based on the information deduced from these random integration events, genomic loci that potentially favor reliable and stable transgene expression were reported for use as targeted transgene integration sites. By comparing stable vs unstable phenotypes across these parameters, we could establish that expression stability may be controlled at three levels: 1) Good choice of integration site, 2) Ensuring integrity of transgene and observing concatemerization pattern after integration, and 3) Checking for potential stress related cellular processes. Genome wide favorable and unfavorable genomic loci for targeted transgene integration can be browsed at https://www.borthlabchoresources.boku.ac.at/.
中国仓鼠卵巢(CHO)细胞系被认为是生产生物治疗药物的首选平台,但与表达不稳定性相关的问题仍未得到解决。在本研究中,我们通过比较稳定表达的细胞系和在10代培养过程中滴度下降的细胞系,研究了不稳定表型的潜在原因。分析了与转基因完整性和拷贝数以及整合位点周围基因组特征相关的因素。对Horizon Discovery CHO-K1(HD-BIOP3)衍生的生产细胞系进行测序,这些细胞系根据低、中、高拷贝数的表型进行选择,每种表型都有稳定和不稳定的转基因表达,以捕获基因组和转录组水平的变化。还确定了每个细胞系中随机整合事件的确切位点,随后对其周围的基因组、转录组和表观遗传模式进行分析。根据从这些随机整合事件中推导的信息,报告了可能有利于可靠和稳定转基因表达的基因组位点,用作靶向转基因整合位点。通过比较这些参数下的稳定与不稳定表型,我们可以确定表达稳定性可能在三个层面受到控制:1)整合位点的良好选择;2)确保转基因的完整性并观察整合后的串联模式;3)检查潜在的与应激相关的细胞过程。可在https://www.borthlabchoresources.boku.ac.at/浏览全基因组范围内有利于和不利于靶向转基因整合的基因组位点。