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利用设计型核酸酶进行基因编辑频率的数字 PCR 评估(GEF-dPCR)。

Digital PCR to assess gene-editing frequencies (GEF-dPCR) mediated by designer nucleases.

机构信息

Research Department Cell and Gene Therapy, Department of Stem Cell Transplantation, University Medical Centre, Hamburg-Eppendorf (UKE), Hamburg, Germany.

Heinrich Pette Institute, Leibniz Institute for Experimental Virology, Hamburg, Germany.

出版信息

Nat Protoc. 2016 Mar;11(3):598-615. doi: 10.1038/nprot.2016.027. Epub 2016 Feb 25.

Abstract

Genome editing using designer nucleases such as transcription activator-like effector nucleases (TALENs) or clustered regularly interspersed short palindromic repeats (CRISPR)-Cas9 nucleases is an emerging technology in basic and applied research. Whereas the application of editing tools, namely CRISPR-Cas9, has recently become very straightforward, quantification of resulting gene knockout rates still remains a bottleneck. This is particularly true if the product of a targeted gene is not easily detectable. To address this problem, we devised a novel gene-editing frequency digital PCR (GEF-dPCR) technique. GEF-dPCR exploits two differently labeled probes that are placed within one amplicon at the gene-editing target site to simultaneously detect wild-type and nonhomologous end-joining (NHEJ)-affected alleles. Taking advantage of the principle of dPCR, this enables concurrent quantification of edited and wild-type alleles in a given sample. We propose that our method is optimal for the monitoring of gene-edited cells in vivo, e.g., in clinical settings. Here we describe preparation, design of primers and probes, and setup and analysis of GEF-dPCR. The setup of GEF-dPCR requires up to 2 weeks (depending on the starting point); once the dPCR has been established, the protocol for sample analysis takes <1 d.

摘要

利用转录激活因子样效应物核酸酶(TALENs)或成簇规律间隔短回文重复序列(CRISPR)-Cas9 核酸酶等设计型核酸酶进行基因组编辑是基础和应用研究中的一项新兴技术。尽管编辑工具(即 CRISPR-Cas9)的应用最近变得非常简单,但对基因敲除率的定量仍然是一个瓶颈。如果目标基因的产物不易检测,则尤其如此。为了解决这个问题,我们设计了一种新型的基因编辑频率数字 PCR(GEF-dPCR)技术。GEF-dPCR 利用两个不同标记的探针,将其放置在基因编辑靶位点的一个扩增子内,以同时检测野生型和非同源末端连接(NHEJ)受影响的等位基因。利用 dPCR 的原理,这使得在给定样本中能够同时定量编辑型和野生型等位基因。我们提出,我们的方法非常适合监测体内基因编辑细胞,例如在临床环境中。在这里,我们描述了 GEF-dPCR 的制备、引物和探针的设计、设置和分析。GEF-dPCR 的设置最多需要 2 周(取决于起点);一旦建立了 dPCR,样品分析的方案耗时不到 1 天。

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