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用于活的人类细胞的RESOLFT超分辨率显微镜的CRISPR/Cas9介导的内源性蛋白质标记

CRISPR/Cas9-mediated endogenous protein tagging for RESOLFT super-resolution microscopy of living human cells.

作者信息

Ratz Michael, Testa Ilaria, Hell Stefan W, Jakobs Stefan

机构信息

Max Planck Institute for Biophysical Chemistry, Department of NanoBiophotonics, Am Fassberg 11, 37077 Göttingen, Germany.

1] Max Planck Institute for Biophysical Chemistry, Department of NanoBiophotonics, Am Fassberg 11, 37077 Göttingen, Germany [2] University of Göttingen Medical Faculty, Dept. of Neurology, Robert-Koch-Str. 40, 37075 Göttingen, Germany.

出版信息

Sci Rep. 2015 Apr 20;5:9592. doi: 10.1038/srep09592.

Abstract

Overexpression is a notorious concern in conventional and especially in super-resolution fluorescence light microscopy studies because it may cause numerous artifacts including ectopic sub-cellular localizations, erroneous formation of protein complexes, and others. Nonetheless, current live cell super-resolution microscopy studies generally rely on the overexpression of a host protein fused to a fluorescent protein. Here, we establish CRISPR/Cas9-mediated generation of heterozygous and homozygous human knockin cell lines expressing fluorescently tagged proteins from their respective native genomic loci at close to endogenous levels. We tagged three different proteins, exhibiting various localizations and expression levels, with the reversibly switchable fluorescent protein rsEGFP2. We demonstrate the benefit of endogenous expression levels compared to overexpression and show that typical overexpression-induced artefacts were avoided in genome-edited cells. Fluorescence activated cell sorting analysis revealed a narrow distribution of fusion protein expression levels in genome-edited cells, compared to a pronounced variability in transiently transfected cells. Using low light intensity RESOLFT (reversible saturable optical fluorescence transitions) nanoscopy we show sub-diffraction resolution imaging of living human knockin cells. Our strategy to generate human cell lines expressing fluorescent fusion proteins at endogenous levels for RESOLFT nanoscopy can be extended to other fluorescent tags and super-resolution approaches.

摘要

在传统荧光显微镜研究尤其是超分辨率荧光显微镜研究中,过表达是一个备受关注的问题,因为它可能会导致许多假象,包括异位亚细胞定位、蛋白质复合物的错误形成等。尽管如此,目前的活细胞超分辨率显微镜研究通常依赖于与荧光蛋白融合的宿主蛋白的过表达。在此,我们建立了CRISPR/Cas9介导的杂合和纯合人敲入细胞系的生成方法,这些细胞系能在接近内源性水平的条件下,从各自的天然基因组位点表达荧光标记蛋白。我们用可逆可切换荧光蛋白rsEGFP2标记了三种具有不同定位和表达水平的蛋白。我们证明了与过表达相比,内源性表达水平的优势,并表明在基因组编辑细胞中避免了典型的过表达诱导假象。荧光激活细胞分选分析显示,与瞬时转染细胞中明显的变异性相比,基因组编辑细胞中融合蛋白表达水平的分布较窄。使用低光强RESOLFT(可逆饱和光学荧光跃迁)纳米显微镜,我们展示了活的人敲入细胞的亚衍射分辨率成像。我们为RESOLFT纳米显微镜生成内源性水平表达荧光融合蛋白的人细胞系的策略可扩展到其他荧光标签和超分辨率方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c5e/4402611/21ec11603daa/srep09592-f1.jpg

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