Otto Warburg Laboratories, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Methods Mol Biol. 2022;2520:1-24. doi: 10.1007/7651_2021_457.
Pooled CRISPR screens are emerging as a powerful tool to dissect regulatory networks, by assessing how a protein responds to genetic perturbations in a highly multiplexed manner. A large number of genes are perturbed in a cell population through genomic integration of one single-guide RNA (sgRNA) per cell. A subset of cells with the phenotype of interest can then be enriched through fluorescence-activated cell sorting (FACS). SgRNAs with altered abundance after phenotypic enrichment allow identification of genes that either promote or attenuate the investigated phenotype. Here we provide detailed guidelines on how to design and execute a pooled CRISPR screen to investigate molecular phenotypes. We describe how to generate a custom sgRNA library and how to perform a FACS-based screen using readouts such as intracellular antibody staining or Flow-FISH to assess phosphorylation levels or RNA abundance. Through the variety of available perturbation systems and readout options many different molecular and cellular phenotypes can now be tackled with pooled CRISPR screens.
CRISPR 文库筛选正在成为一种强大的工具,通过以高通量的方式评估蛋白质对遗传扰动的反应,来剖析调控网络。通过将每个细胞整合一个单指导 RNA(sgRNA),可以在细胞群体中干扰大量基因。然后,可以通过荧光激活细胞分选(FACS)对具有所需表型的细胞亚群进行富集。在表型富集后,sgRNA 的丰度发生变化,可以鉴定出促进或减弱所研究表型的基因。本文提供了设计和执行 pooled CRISPR 筛选以研究分子表型的详细指南。我们描述了如何生成定制的 sgRNA 文库,以及如何使用基于 FACS 的筛选方法,通过细胞内抗体染色或 Flow-FISH 等读取方法来评估磷酸化水平或 RNA 丰度。通过各种可用的扰动系统和读取选项,现在可以使用 pooled CRISPR 筛选来研究许多不同的分子和细胞表型。