Manghwar Hakim, Li Bo, Ding Xiao, Hussain Amjad, Lindsey Keith, Zhang Xianlong, Jin Shuangxia
National Key Laboratory of Crop Genetic Improvement Huazhong Agricultural University Wuhan Hubei 430070 P. R. China.
Institute of Nuclear and Biological Technologies Xinjiang Academy of Agricultural Sciences Urumqi Xinjiang 830091 P. R. China.
Adv Sci (Weinh). 2020 Feb 6;7(6):1902312. doi: 10.1002/advs.201902312. eCollection 2020 Mar.
Life sciences have been revolutionized by genome editing (GE) tools, including zinc finger nucleases, transcription activator-Like effector nucleases, and CRISPR (clustered regulatory interspaced short palindromic repeats)/Cas (CRISPR-associated) systems, which make the targeted modification of genomic DNA of all organisms possible. CRISPR/Cas systems are being widely used because of their accuracy, efficiency, and cost-effectiveness. Various classes of CRISPR/Cas systems have been developed, but their extensive use may be hindered by off-target effects. Efforts are being made to reduce the off-target effects of CRISPR/Cas9 by generating various CRISPR/Cas systems with high fidelity and accuracy. Several approaches have been applied to detect and evaluate the off-target effects. Here, the current GE tools, the off-target effects generated by GE technology, types of off-target effects, mechanisms of off-target effects, major concerns, and outcomes of off-target effects in plants and animals are summarized. The methods to detect off-target effects, tools for single-guide RNA (sgRNA) design, evaluation and prediction of off-target effects, and strategies to increase the on-target efficiency and mitigate the off-target impact on intended genome-editing outcomes are summarized.
基因组编辑(GE)工具,包括锌指核酸酶、转录激活样效应物核酸酶和CRISPR(成簇规律间隔短回文重复序列)/Cas(CRISPR相关)系统,彻底改变了生命科学,这些工具使对所有生物体的基因组DNA进行靶向修饰成为可能。CRISPR/Cas系统因其准确性、高效性和成本效益而被广泛使用。目前已开发出各类CRISPR/Cas系统,但其广泛应用可能会受到脱靶效应的阻碍。人们正在努力通过开发各种高保真和高精度的CRISPR/Cas系统来减少CRISPR/Cas9的脱靶效应。已经应用了几种方法来检测和评估脱靶效应。在此,总结了当前的基因组编辑工具、基因组编辑技术产生的脱靶效应、脱靶效应的类型、脱靶效应的机制、主要关注点以及植物和动物中脱靶效应的结果。还总结了检测脱靶效应的方法、单向导RNA(sgRNA)设计工具、脱靶效应的评估和预测,以及提高靶向效率和减轻脱靶对预期基因组编辑结果影响的策略。