Lin Sheng-Jia, Huang Kevin, Petree Cassidy, Qin Wei, Varshney Pratishtha, Varshney Gaurav K
Genes & Human Disease Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK 73104, United States.
Nucleic Acids Res. 2025 Feb 27;53(5). doi: 10.1093/nar/gkaf180.
Genes and genetic variants associated with human disease are continually being discovered, but validating their causative roles and mechanisms remains a significant challenge. CRISPR/Cas9 genome editing in model organisms like zebrafish can enable phenotypic characterization of founder generation (F0) knockouts (Crispants), but existing approaches are not amenable to high-throughput genetic screening due to high variability, cost, and low phenotype penetrance. To overcome these challenges, here we provide guide RNA (gRNA) selection rules that enable high phenotypic penetrance of up to three simultaneous knockouts in F0 animals following injection of 1-2 gRNAs per gene. We demonstrate a strong transcriptomic overlap in our F0 knockouts and stable knockout lines that take several months to generate. We systematically evaluated this approach across 324 gRNAs targeting 125 genes and demonstrated its utility in studying epistasis, characterizing paralogous genes, and validating human disease gene phenotypes across multiple tissues. Applying our approach in a high-throughput manner, we screened and identified 10 novel neurodevelopmental disorders and 50 hearing genes not previously studied in zebrafish. Altogether, our approach achieves high phenotypic penetrance using low numbers of gRNAs per gene in F0 zebrafish, offering a robust pipeline for rapidly characterizing candidate human disease genes.
与人类疾病相关的基因和遗传变异不断被发现,但验证它们的致病作用和机制仍然是一项重大挑战。在斑马鱼等模式生物中进行CRISPR/Cas9基因组编辑,可以对奠基代(F0)基因敲除(Crispants)进行表型特征分析,但由于高变异性、高成本和低表型穿透率,现有方法不适用于高通量基因筛选。为了克服这些挑战,我们在此提供了引导RNA(gRNA)选择规则,在每个基因注射1-2个gRNA后,能使F0动物中多达三个同时进行的基因敲除具有高表型穿透率。我们证明了我们的F0基因敲除与需要数月才能产生的稳定基因敲除系之间存在很强的转录组重叠。我们系统地评估了针对125个基因的324个gRNA的这种方法,并证明了其在研究上位性、表征旁系同源基因以及验证多个组织中的人类疾病基因表型方面的效用。以高通量方式应用我们的方法,我们筛选并鉴定了10种新的神经发育障碍和50个以前未在斑马鱼中研究过的听力基因。总之,我们的方法在F0斑马鱼中每个基因使用少量gRNA即可实现高表型穿透率,为快速表征候选人类疾病基因提供了一个强大的流程。