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基于 CRISPR/dCas9 的表观遗传学编辑的质粒传递和单细胞质粒表达分析。

Plasmid Delivery and Single-Cell Plasmid Expression Analysis for CRISPR/dCas9-Based Epigenetic Editing.

机构信息

Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.

Department of Pathology and Medical Biology, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

出版信息

Methods Mol Biol. 2024;2842:255-265. doi: 10.1007/978-1-0716-4051-7_13.

Abstract

To fully exploit the potentials of reprogramming the epigenome through CRISPR/dCas9 systems for epigenetic editing, there is a growing need for improved transfection methods. With the utilization of constructs often with large sizes and the wide array of cell types used to read out the effect of epigenetic editing in different biological applications, it is evident that ongoing optimalization of transfection protocols tailored to each specific experimental setup is essential. Whether the goal is the production of viral particles using human embryonic kidney (HEK) cells or the direct examination of epigenomic modifications in the target cell type, continuous refinement of transfection methods is crucial. In the hereafter outlined protocol, we focus on optimization of transfection protocols by comparing different reagents and methods, creating a streamlined setup for transfection efficiency optimization in cultured mammalian cells. Our protocol provides a comprehensive overview of flow cytometry analysis following transfection not just to improve transfection efficiency but also to assess the expression level of the utilized construct. We showcase our transfection protocol optimization using HEK293T Lenti-X™ and breast cancer MCF-7 cell lines, using a single-guide RNA-containing plasmid. Specifically, we incorporate heat shock treatment for increased transfection efficiency of the MCF-7 cell line. Our detailed optimization protocol for efficient plasmid delivery and measurement of single-cell plasmid expression provides a comprehensive instruction for assessing both transient and sustained effects of epigenetic reprogramming.

摘要

为了充分发挥通过 CRISPR/dCas9 系统重编程表观基因组进行表观遗传编辑的潜力,人们越来越需要改进转染方法。由于构建物的利用通常具有较大的尺寸,并且广泛的细胞类型用于读取不同生物应用中表观遗传编辑的效果,因此显然需要针对每个特定实验设置进行持续优化的转染方案。无论是使用人胚肾 (HEK) 细胞生产病毒颗粒的目标,还是直接检测目标细胞类型中的表观基因组修饰,不断改进转染方法都是至关重要的。在下面概述的方案中,我们专注于通过比较不同的试剂和方法来优化转染方案,为培养的哺乳动物细胞中转染效率的优化创建一个简化的设置。我们的方案提供了转染后进行流式细胞术分析的全面概述,不仅可以提高转染效率,还可以评估所用构建体的表达水平。我们展示了使用含有单引导 RNA 的质粒对 HEK293T Lenti-X™ 和乳腺癌 MCF-7 细胞系进行转染方案优化的示例,具体方法是采用热休克处理来提高 MCF-7 细胞系的转染效率。我们对有效质粒传递和单细胞质粒表达测量的详细优化方案为评估表观遗传重编程的瞬时和持续效果提供了全面的指导。

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