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利用 GUIDE-tag 在体内进行全基因组范围的 CRISPR 编辑检测。

Genome-wide detection of CRISPR editing in vivo using GUIDE-tag.

机构信息

RNA Therapeutics Institute, University of Massachusetts Medical School, Worcester, MA, USA.

Department of Molecular, Cell and Cancer Biology, University of Massachusetts Medical School, Worcester, MA, USA.

出版信息

Nat Commun. 2022 Jan 21;13(1):437. doi: 10.1038/s41467-022-28135-9.

Abstract

Analysis of off-target editing is an important aspect of the development of safe nuclease-based genome editing therapeutics. in vivo assessment of nuclease off-target activity has primarily been indirect (based on discovery in vitro, in cells or via computational prediction) or through ChIP-based detection of double-strand break (DSB) DNA repair factors, which can be cumbersome. Herein we describe GUIDE-tag, which enables one-step, off-target genome editing analysis in mouse liver and lung. The GUIDE-tag system utilizes tethering between the Cas9 nuclease and the DNA donor to increase the capture rate of nuclease-mediated DSBs and UMI incorporation via Tn5 tagmentation to avoid PCR bias. These components can be delivered as SpyCas9-mSA ribonucleoprotein complexes and biotin-dsDNA donor for in vivo editing analysis. GUIDE-tag enables detection of off-target sites where editing rates are ≥ 0.2%. UDiTaS analysis utilizing the same tagmented genomic DNA detects low frequency translocation events with off-target sites and large deletions in vivo. The SpyCas9-mSA and biotin-dsDNA system provides a method to capture DSB loci in vivo in a variety of tissues with a workflow that is amenable to analysis of gross genomic alterations that are associated with genome editing.

摘要

脱靶编辑分析是安全的基于核酸酶的基因组编辑治疗方法开发的一个重要方面。基于体外、细胞内或计算预测发现,或通过 ChIP 检测双链断裂 (DSB) DNA 修复因子,对核酸酶脱靶活性的体内评估主要是间接的,这些方法繁琐。在此,我们描述了 GUIDE-tag,它可以在小鼠肝脏和肺部中进行一步式的脱靶基因组编辑分析。GUIDE-tag 系统利用 Cas9 核酸酶和 DNA 供体之间的连接,增加了通过 Tn5 标签化介导的 DSB 和 UMI 掺入的捕获率,从而避免了 PCR 偏倚。这些组件可以作为 SpyCas9-mSA 核糖核蛋白复合物和生物素-dsDNA 供体用于体内编辑分析。GUIDE-tag 能够检测到编辑率≥0.2%的脱靶位点。利用相同标签化基因组 DNA 的 UDiTaS 分析可以检测到体内具有脱靶位点的低频易位事件和大片段缺失。SpyCas9-mSA 和生物素-dsDNA 系统提供了一种在多种组织中捕获体内 DSB 位点的方法,该工作流程适用于与基因组编辑相关的大基因组改变的分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c507/8782884/d9a058340baa/41467_2022_28135_Fig1_HTML.jpg

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