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将标记蛋白敲入 5'UTR 可实现高效生成稳定细胞系。

Knock-in of Labeled Proteins into 5'UTR Enables Highly Efficient Generation of Stable Cell Lines.

机构信息

Department of Anatomy and Developmental Biology, Graduate School of Biomedical and Health Sciences, Hiroshima University.

JST, PRESTO.

出版信息

Cell Struct Funct. 2021 Mar 16;46(1):21-35. doi: 10.1247/csf.21002. Epub 2021 Jan 26.

Abstract

Stable cell lines and animal models expressing tagged proteins are important tools for studying behaviors of cells and molecules. Several molecular biology technologies have been applied with varying degrees of success and efficiencies to establish cell lines expressing tagged proteins. Here we applied CRISPR/Cas9 for the knock-in of tagged proteins into the 5'UTR of the endogenous gene loci. With this 5'UTR-targeting knock-in strategy, stable cell lines expressing Arl13b-Venus, Reep6-HA, and EGFP-alpha-tubulin were established with high efficiencies ranging from 50 to 80% in antibiotic selected cells. The localization of the knock-in proteins were identical to that of the endogenous proteins in wild-type cells and showed homogenous expression. Moreover, the expression of knock-in EGFP-alpha-tubulin from the endogenous promoter was stable over long-term culture. We further demonstrated that the fluorescent signals were enough for a long time time-lapse imaging. The fluorescent signals were distinctly visible during the whole duration of the time-lapse imaging and showed specific subcellular localizations. Altogether, our strategy demonstrates that 5'UTR is an amenable site to generate cell lines for the stable expression of tagged proteins from endogenous loci in mammalian cells.Key words: CRISPR/Cas9, knock-in, primary cilium, UTR, tubulin.

摘要

稳定表达标记蛋白的细胞系和动物模型是研究细胞和分子行为的重要工具。已经应用了几种分子生物学技术,其成功率和效率各有不同,用于建立表达标记蛋白的细胞系。在这里,我们应用 CRISPR/Cas9 将标记蛋白敲入到内源性基因座的 5'UTR 中。通过这种靶向 5'UTR 的敲入策略,稳定表达 Arl13b-Venus、Reep6-HA 和 EGFP-α-微管蛋白的细胞系以 50%至 80%的抗生素选择细胞的高效率建立。敲入蛋白的定位与野生型细胞中内源性蛋白的定位相同,并且表现出均匀的表达。此外,来自内源性启动子的敲入 EGFP-α-微管蛋白的表达在长期培养中是稳定的。我们进一步证明,荧光信号足以进行长时间延时成像。在延时成像的整个过程中,荧光信号清晰可见,并显示出特定的亚细胞定位。总之,我们的策略表明,5'UTR 是在哺乳动物细胞中从内源性基因座稳定表达标记蛋白的细胞系的合适位点。

关键词

CRISPR/Cas9、敲入、初级纤毛、UTR、微管蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8604/10511053/ff36f654b5fe/csf_46_21002-f001.jpg

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