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一种用于人悬浮细胞系 CRISPR-Cas9 基因编辑的稳健方案。

A Robust Protocol for CRISPR-Cas9 Gene Editing in Human Suspension Cell Lines.

机构信息

Cancer Science Institute of Singapore, National University of Singapore, Singapore.

MSD Singapore, Quantitative Biosciences, MSD, Singapore.

出版信息

Curr Protoc. 2021 Nov;1(11):e286. doi: 10.1002/cpz1.286.

Abstract

The implementation of clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 systems in mammalian cells has sparked an exciting new era in targeted gene editing. CRISPR-Cas9 technologies allow gene function to be interrogated by gene deletions, mutations, and truncations, and by epitope tagging and promoter activity modulation. Many robust protocols have been published to date on CRISPR-Cas9 techniques, however, most of these focus on adherent cell lines. Suspension cell lines, typically of hematolymphoid origin, such as Jurkat, Daudi, and TOLEDO, pose unique challenges to the setup of CRISPR experiments. Here, using B cell lymphoma cells as a primary model, we describe a comprehensive protocol for targeted gene manipulations using the CRISPR-Cas9 system in suspension cells. We also highlight necessary optimization steps to make this approach universal to other suspension cell lines. We first describe a detailed protocol for transient expression of the Cas9 nuclease and guide RNAs. We then suggest workflows for obtaining single-cell clones and for screening for successful homozygous knockout (KO) clones in suspension lines. This protocol aims to serve as a comprehensive resource to facilitate gene editing experiments for users starting CRISPR-Cas9 gene editing protocols on suspension cell lines or those looking to optimize their current workflows. © 2021 Wiley Periodicals LLC. Basic Protocol 1: Transient CRISPR Cas9-gRNA delivery for gene knockout by Neon electroporation Support Protocol 1: Designing and preparing gene-specific gRNA Support Protocol 2: Preparation of conditioned medium and culture vessels for single-cell FACS Alternate Protocol 1: Transient CRISPR Cas9-gRNA delivery for gene knockout by Nepagene electroporator Basic Protocol 2: FACS and single-cell clone generation Alternate Protocol 2: Manual cell dilution to obtain single-cell clones Basic Protocol 3: Confirming indels status in single-cell clones by PCR on genomic DNA and Sanger sequencing.

摘要

CRISPR-Cas9 系统在哺乳动物细胞中的应用引发了靶向基因编辑的新时代。CRISPR-Cas9 技术允许通过基因缺失、突变和截短,以及表位标记和启动子活性调节来研究基因功能。迄今为止,已经发表了许多关于 CRISPR-Cas9 技术的强大方案,但大多数方案都侧重于贴壁细胞系。悬浮细胞系,通常来源于血液淋巴系统,如 Jurkat、Daudi 和 TOLEDO,给 CRISPR 实验的建立带来了独特的挑战。在这里,我们使用 B 细胞淋巴瘤细胞作为主要模型,描述了在悬浮细胞中使用 CRISPR-Cas9 系统进行靶向基因操作的综合方案。我们还强调了必要的优化步骤,使这种方法适用于其他悬浮细胞系。我们首先描述了瞬时表达 Cas9 核酸酶和向导 RNA 的详细方案。然后,我们为在悬浮系中获得单细胞克隆和筛选成功的纯合基因敲除(KO)克隆提出了工作流程。本方案旨在为在悬浮细胞系上启动 CRISPR-Cas9 基因编辑方案或希望优化其当前工作流程的用户提供一个综合资源,以促进基因编辑实验。© 2021 威利父子公司。基础方案 1:通过 Neon 电穿孔进行瞬时 CRISPR Cas9-gRNA 递送以进行基因敲除 支持方案 1:设计和制备基因特异性 gRNA 支持方案 2:制备用于单细胞 FACS 的条件培养基和培养器皿 替代方案 1:通过 Nepagene 电穿孔进行瞬时 CRISPR Cas9-gRNA 递送以进行基因敲除 基础方案 2:FACS 和单细胞克隆生成 替代方案 2:手动细胞稀释以获得单细胞克隆 基础方案 3:通过基因组 DNA 的 PCR 和 Sanger 测序确认单细胞克隆中的插入缺失状态。

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