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无标记定量分析 Cas9 诱导的双链断裂修复途径的利用。

Marker-free quantification of repair pathway utilization at Cas9-induced double-strand breaks.

机构信息

Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, NC 27599, USA.

Curriculum in Genetics and Molecular Biology, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Nucleic Acids Res. 2021 May 21;49(9):5095-5105. doi: 10.1093/nar/gkab299.

Abstract

Genome integrity and genome engineering require efficient repair of DNA double-strand breaks (DSBs) by non-homologous end joining (NHEJ), homologous recombination (HR), or alternative end-joining pathways. Here we describe two complementary methods for marker-free quantification of DSB repair pathway utilization at Cas9-targeted chromosomal DSBs in mammalian cells. The first assay features the analysis of amplicon next-generation sequencing data using ScarMapper, an iterative break-associated alignment algorithm to classify individual repair products based on deletion size, microhomology usage, and insertions. The second assay uses repair pathway-specific droplet digital PCR assays ('PathSig-dPCR') for absolute quantification of signature DSB repair outcomes. We show that ScarMapper and PathSig-dPCR enable comprehensive assessment of repair pathway utilization in different cell models, after a variety of experimental perturbations. We use these assays to measure the differential impact of DNA end resection on NHEJ, HR and polymerase theta-mediated end joining (TMEJ) repair. These approaches are adaptable to any cellular model system and genomic locus where Cas9-mediated targeting is feasible. Thus, ScarMapper and PathSig-dPCR allow for systematic fate mapping of a targeted DSB with facile and accurate quantification of DSB repair pathway choice at endogenous chromosomal loci.

摘要

基因组完整性和基因组工程需要通过非同源末端连接 (NHEJ)、同源重组 (HR) 或替代性末端连接途径有效地修复 DNA 双链断裂 (DSB)。在这里,我们描述了两种互补的方法,可用于无标记定量分析哺乳动物细胞中 Cas9 靶向染色体 DSB 处 DSB 修复途径的利用。第一种测定方法的特点是使用 ScarMapper 分析扩增子下一代测序数据,这是一种迭代的与断裂相关的对齐算法,可根据缺失大小、微同源性使用和插入物对单个修复产物进行分类。第二种测定方法使用修复途径特异性液滴数字 PCR 测定法('PathSig-dPCR')对特征性 DSB 修复结果进行绝对定量。我们表明,ScarMapper 和 PathSig-dPCR 可在多种实验干扰后,全面评估不同细胞模型中修复途径的利用情况。我们使用这些测定法来测量 DNA 末端切除对 NHEJ、HR 和聚合酶 theta 介导的末端连接 (TMEJ) 修复的差异影响。这些方法适用于任何可行 Cas9 介导靶向的细胞模型系统和基因组基因座。因此,ScarMapper 和 PathSig-dPCR 允许对靶向 DSB 进行系统的命运映射,并轻松准确地定量内源性染色体基因座上 DSB 修复途径的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6312/8136827/1a1eab73f035/gkab299fig1.jpg

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