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CRISPRtools: a flexible computational platform for performing CRISPR/Cas9 experiments in the mouse

机译:CRISPRTOOLS:用于在鼠标中执行CRISPR / CAS9实验的灵活计算平台

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摘要

Genome editing using the CRISPR/Cas9 RNA-guided endonuclease system has rapidly become a driving force for discovery in modern biomedical research. This simple yet elegant system has been widely used to generate both loss-of-function alleles and precision knock-in mutations using single-stranded donor oligonucleotides. Our CRISPRtools platform supports both of these applications in order to facilitate the use of CRISPR/Cas9. While there are several tools that facilitate CRISPR/Cas9 design and screen for potential off-target sites, the process is typically performed sequentially on single genes, limiting scalability for large-scale programs. Here, the design principle underlying gene ablation is based upon using paired guides flanking a critical region/exon of interest to create deletions. Guide pairs are rank ordered based upon published efficiency scores and off-target analyses, and reported in a concise format for downstream implementation. The exon deletion strategy simplifies characterization of founder animals and is the strategy employed for the majority of knockouts in the mouse. In proof-of-principle experiments, the effectiveness of this approach is demonstrated using microinjection and electroporation to introduce CRISPR/Cas9 components into mouse zygotes to delete critical exons.
机译:使用CRISPR / CAS9 RNA引导的内切核酸酶系统的基因组编辑迅速成为现代生物医学研究中发现的驱动力。这种简单而优雅的系统已被广泛用于使用单链供体寡核苷酸产生功能丧失等位基因和精密敲击突变。我们的CRISPRTOOLS平台支持这两个应用程序,以便于使用CRISPR / CAS9。虽然有几种工具促进CRISPR / CAS9设计和屏幕用于潜在的偏移站点,但通常在单个基因上顺序执行该过程,限制大规模程序的可扩展性。这里,基因消融的设计原理基于使用侧翼的配对引导件,突出的临界区域/外显子以产生缺失。指南对基于发布的效率分数和偏移目标分析,并以简洁的形式报告下游实施。外显子缺失策略简化了创始人动物的特征,是对小鼠大多数淘汰赛的策略。在原理上的实验中,使用显微注射和电穿孔来证明这种方法的有效性,以将CRISPR / CAS9组分引入小鼠Zygotes以删除关键的外显子。

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