清脆的
Cas9
引导RNA
生物
中国仓鼠卵巢细胞
基因敲除
基因
桑格测序
计算生物学
基因组工程
基因靶向
遗传学
基因组编辑
分子生物学
DNA测序
细胞培养
作者
Joseph O. Carver,Marie Kern,Peggy Ko,Midori Greenwood‐Goodwin,Xin Yu,Dana Duan,Danming Tang,Shahram Misaghi,Simon Auslaender,Ben Haley,Inn H. Yuk,Amy Shen
摘要
Abstract Chinese hamster ovary (CHO) cell engineering based on CRISPR/Cas9 knockout (KO) technology requires the delivery of guide RNA (gRNA) and Cas9 enzyme for efficient gene targeting. With an ever‐increasing list of promising gene targets, developing, and optimizing a multiplex gene KO protocol is crucial for rapid CHO cell engineering. Here, we describe a method that can support efficient targeting and KO of up to 10 genes through sequential transfections. This method utilizes Cas9 protein to first screen multiple synthetic gRNAs per gene, followed by Sanger sequencing indel analysis, to identify effective gRNA sequences. Using sequential transfections of these potent gRNAs led to the isolation of single cell clones with the targeted deletion of all 10 genes (as confirmed by Sanger sequencing at the DNA level and mass spectrometry at the protein level). Screening 704 single cell clones yielded 6 clones in which all 10 genes were deleted through sequential transfections, demonstrating the success of this decaplex gene editing strategy. This pragmatic approach substantially reduces the time and effort required to generate multiple gene knockouts in CHO cells.
科研通智能强力驱动
Strongly Powered by AbleSci AI