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TOPO-seq揭示了DNA拓扑结构诱导的Cas9和碱基编辑器的脱靶活性。

TOPO-seq reveals DNA topology-induced off-target activity by Cas9 and base editors.

作者信息

Duan Min, Gao Pan, Zhang Yi-Zhou, Hu Yu-Long, Zhou Lei, Xu Zhong-Chen, Qiu Hou-Yuan, Tong Xiao-Han, Ji Rui-Jin, Lei Xin-Lin, Yin Hao, Guo Cun-Lan, Zhang Ying

机构信息

Department of Esophagus, Mediastinum and Lymphatic Oncology, Zhongnan Hospital of Wuhan University, Wuhan University, Wuhan, China.

Frontier Science Center for Immunology and Metabolism, Medical Research Institute, Wuhan University, Wuhan, China.

出版信息

Nat Chem Biol. 2025 Apr 2. doi: 10.1038/s41589-025-01867-7.

Abstract

With the increasing use of CRISPR-Cas9, detecting off-target events is essential for safety. Current methods primarily focus on guide RNA (gRNA) sequence mismatches, often overlooking the impact of DNA topology in regulating off-target activity. Here we present TOPO-seq, a high-throughput and sensitive method that identifies genome-wide off-target effects of Cas9 and base editors while accounting for DNA topology. TOPO-seq revealed that topology-induced off-target sites frequently harbor higher mismatches than the relaxed DNA sequence, with over 50% of off-target sites containing six mismatches, which are usually overlooked using previous methods. Applying TOPO-seq to three therapeutic gRNAs in hematopoietic stem cells identified 47 bona fide off-target loci, six of which are specifically induced by DNA topology. These findings highlight DNA topology as a regulator of off-target editing rates, establish TOPO-seq as a robust method for capturing DNA topology-induced off-target events and underscore its importance in off-target detection for developing safe genome-editing therapies.

摘要

随着CRISPR-Cas9的使用日益增加,检测脱靶事件对于安全性至关重要。目前的方法主要关注向导RNA(gRNA)序列错配,常常忽略DNA拓扑结构在调节脱靶活性中的影响。在此,我们介绍TOPO-seq,这是一种高通量且灵敏的方法,可在考虑DNA拓扑结构的同时识别Cas9和碱基编辑器在全基因组范围内的脱靶效应。TOPO-seq揭示,拓扑结构诱导的脱靶位点通常比松弛的DNA序列含有更多错配,超过50%的脱靶位点含有六个错配,而使用先前的方法这些通常会被忽略。将TOPO-seq应用于造血干细胞中的三种治疗性gRNA,鉴定出47个真正的脱靶位点,其中六个是由DNA拓扑结构特异性诱导的。这些发现突出了DNA拓扑结构作为脱靶编辑率的调节因子,确立了TOPO-seq作为捕获DNA拓扑结构诱导的脱靶事件的可靠方法,并强调了其在开发安全的基因组编辑疗法的脱靶检测中的重要性。

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