Edinburgh Cancer Research United Kingdom Centre, University of Edinburgh, Edinburgh, United Kingdom.
MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh, United Kingdom.
Elife. 2018 Apr 11;7:e35069. doi: 10.7554/eLife.35069.
CRISPR/Cas9 can be used for precise genetic knock-in of epitope tags into endogenous genes, simplifying experimental analysis of protein function. However, Cas9-assisted epitope tagging in primary mammalian cell cultures is often inefficient and reliant on plasmid-based selection strategies. Here, we demonstrate improved knock-in efficiencies of diverse tags (V5, 3XFLAG, Myc, HA) using co-delivery of Cas9 protein pre-complexed with two-part synthetic modified RNAs (annealed crRNA:tracrRNA) and single-stranded oligodeoxynucleotide (ssODN) repair templates. Knock-in efficiencies of ~5-30%, were achieved without selection in embryonic stem (ES) cells, neural stem (NS) cells, and brain-tumor-derived stem cells. Biallelic-tagged clonal lines were readily derived and used to define Olig2 chromatin-bound interacting partners. Using our novel web-based design tool, we established a 96-well format pipeline that enabled V5-tagging of 60 different transcription factors. This efficient, selection-free and scalable epitope tagging pipeline enables systematic surveys of protein expression levels, subcellular localization, and interactors across diverse mammalian stem cells.
CRISPR/Cas9 可用于将表位标签精确地敲入内源性基因中,从而简化蛋白质功能的实验分析。然而,Cas9 辅助的原代哺乳动物细胞培养中的表位标记通常效率低下,并且依赖于基于质粒的选择策略。在这里,我们通过共递送 Cas9 蛋白与两部分合成修饰的 RNA(退火 crRNA:tracrRNA)和单链寡脱氧核苷酸(ssODN)修复模板,证明了多种标签(V5、3XFLAG、Myc、HA)的敲入效率得到了提高。在胚胎干细胞(ES 细胞)、神经干细胞(NS 细胞)和脑肿瘤衍生的干细胞中,无需选择即可实现约 5-30%的敲入效率。双等位基因标记的克隆系易于衍生,并用于定义 Olig2 染色质结合的相互作用伙伴。使用我们新的基于网络的设计工具,我们建立了一种 96 孔格式的流水线,可实现 60 种不同转录因子的 V5 标记。这种高效、无选择且可扩展的表位标记流水线可用于系统研究不同哺乳动物干细胞中的蛋白质表达水平、亚细胞定位和相互作用物。