Novartis Institutes for Biomedical Research, 4002 Basel, Switzerland.
Cells. 2020 Dec 5;9(12):2618. doi: 10.3390/cells9122618.
Genetic knock-in using homology-directed repair is an inefficient process, requiring the selection of few modified cells and hindering its application to primary cells. Here, we describe Homology independent gene Tagging (HiTag), a method to tag a protein of interest by CRISPR in up to 66% of transfected cells with one single electroporation. The technique has proven effective in various cell types and can be used to knock in a fluorescent protein for live cell imaging, to modify the cellular location of a target protein and to monitor the levels of a protein of interest by a luciferase assay in primary cells.
利用同源定向修复进行基因敲入是一个效率低下的过程,需要选择少数经过修饰的细胞,这限制了其在原代细胞中的应用。在这里,我们描述了同源非依赖性基因标记(HiTag),这是一种通过 CRISPR 在多达 66%的转染细胞中标记目的蛋白的方法,只需一次电穿孔即可完成。该技术已被证明在各种细胞类型中都很有效,可用于敲入荧光蛋白进行活细胞成像,改变靶蛋白的细胞位置,并通过原代细胞中的荧光素酶测定法监测目的蛋白的水平。