https://ror.org/056d84691 Department of Microbiology, Tumor, and Cell Biology, Science for Life Laboratory, Karolinska Institute, Solna, Sweden.
https://ror.org/056d84691 Department of Microbiology, Tumor, and Cell Biology, Science for Life Laboratory, Karolinska Institute, Solna, Sweden
Life Sci Alliance. 2023 Nov 20;7(2). doi: 10.26508/lsa.202302128. Print 2024 Feb.
The CRISPR-Cas9 system is a powerful tool for studying gene functions and holds potential for disease treatment. However, precise genome editing requires thorough assessments to minimize unintended on- and off-target effects. Here, we report an unexpected 283-kb deletion on Chromosome 10 (10q23.31) in chronic myelogenous leukemia-derived HAP1 cells, which are frequently used in CRISPR screens. The deleted region encodes regulatory genes, including , , , and We found that this deletion was not a direct consequence of CRISPR-Cas9 off-targeting but rather occurred frequently during the generation of CRISPR-Cas9-modified cells. The deletion was associated with global changes in histone acetylation and gene expression, affecting fundamental cellular processes such as cell cycle and DNA replication. We detected this deletion in cancer patient genomes. As in HAP1 cells, the deletion contributed to similar gene expression patterns among cancer patients despite interindividual differences. Our findings suggest that the unintended deletion of 10q23.31 can confound CRISPR-Cas9 studies and underscore the importance to assess unintended genomic changes in CRISPR-Cas9-modified cells, which could impact cancer research.
CRISPR-Cas9 系统是研究基因功能的强大工具,具有治疗疾病的潜力。然而,精确的基因组编辑需要进行彻底的评估,以最小化意外的脱靶效应。在这里,我们报告了在慢性髓性白血病衍生的 HAP1 细胞中,染色体 10(10q23.31)上出现的一个意外的 283kb 缺失,该细胞经常用于 CRISPR 筛选。缺失的区域编码调节基因,包括、、、和。我们发现,这种缺失不是 CRISPR-Cas9 脱靶的直接后果,而是在 CRISPR-Cas9 修饰细胞的产生过程中经常发生的。缺失与组蛋白乙酰化和基因表达的全局变化相关,影响细胞周期和 DNA 复制等基本细胞过程。我们在癌症患者的基因组中检测到了这种缺失。与 HAP1 细胞一样,尽管个体间存在差异,但缺失导致了癌症患者之间相似的基因表达模式。我们的研究结果表明,10q23.31 的意外缺失可能会干扰 CRISPR-Cas9 研究,并强调了在 CRISPR-Cas9 修饰细胞中评估意外的基因组变化的重要性,这可能会影响癌症研究。