a Cancer Epigenetics Laboratory , The Francis Crick Institute , 1 Midland Road, London NW1 1AT , UK.
b UCL Cancer Institute , University College London , London WC1E 6DD , UK.
Epigenetics. 2017;12(12):1065-1075. doi: 10.1080/15592294.2017.1395121. Epub 2018 Jan 12.
The CRISPR-Cas9 system has revolutionized genome engineering, allowing precise modification of DNA in various organisms. The most popular method for conducting CRISPR-based functional screens involves the use of pooled lentiviral libraries in selection screens coupled with next-generation sequencing. Screens employing genome-scale pooled small guide RNA (sgRNA) libraries are demanding, particularly when complex assays are used. Furthermore, pooled libraries are not suitable for microscopy-based high-content screens or for systematic interrogation of protein function. To overcome these limitations and exploit CRISPR-based technologies to comprehensively investigate epigenetic mechanisms, we have generated a focused sgRNA library targeting 450 epigenetic regulators with multiple sgRNAs in human cells. The lentiviral library is available both in an arrayed and pooled format and allows temporally-controlled induction of gene knock-out. Characterization of the library showed high editing activity of most sgRNAs and efficient knock-out at the protein level in polyclonal populations. The sgRNA library can be used for both selection and high-content screens, as well as for targeted investigation of selected proteins without requiring isolation of knock-out clones. Using a variety of functional assays we show that the library is suitable for both in vitro and in vivo applications, representing a unique resource to study epigenetic mechanisms in physiological and pathological conditions.
CRISPR-Cas9 系统彻底改变了基因组工程,可实现各种生物体中 DNA 的精确修饰。基于 CRISPR 的功能筛选最常用的方法是在选择筛选中使用汇集的慢病毒文库,并结合下一代测序。使用基于全基因组汇集的小向导 RNA(sgRNA)文库的筛选要求很高,特别是在使用复杂测定法时。此外,汇集文库不适合基于显微镜的高内涵筛选,也不适合系统探究蛋白质功能。为了克服这些限制并利用基于 CRISPR 的技术全面研究表观遗传机制,我们针对 450 个表观遗传调节剂生成了一个靶向人类细胞的 sgRNA 文库,其中包含多个 sgRNA。该慢病毒文库以排列和汇集两种格式提供,允许对基因敲除进行时间控制诱导。文库的特征分析显示,大多数 sgRNA 具有很高的编辑活性,在多克隆群体中可有效敲除蛋白质水平。sgRNA 文库可用于选择和高内涵筛选,以及对选定蛋白质进行靶向研究,而无需分离敲除克隆。使用各种功能测定法,我们表明该文库适用于体外和体内应用,是研究生理和病理条件下表观遗传机制的独特资源。