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碱基编辑:人类疾病中的当前进展和治疗机会。

Prime editing: current advances and therapeutic opportunities in human diseases.

机构信息

Department of Ophthalmology, Ninth People's Hospital, Shanghai JiaoTong University School of Medicine, Shanghai 200011, China; Shanghai Key Laboratory of Orbital Diseases and Ocular Oncology, Shanghai 200011, China.

Merkin Institute of Transformative Technologies in Healthcare, Broad Institute of Harvard and MIT, Cambridge MA 02141, USA; Department of Chemistry and Chemical Biology, Harvard University, Cambridge MA 02138, USA; Howard Hughes Medical Institute, Harvard University, Cambridge MA 02138, USA.

出版信息

Sci Bull (Beijing). 2023 Dec 30;68(24):3278-3291. doi: 10.1016/j.scib.2023.11.015. Epub 2023 Nov 7.

Abstract

Gene editing ushers in a new era of disease treatment since many genetic diseases are caused by base-pair mutations in genomic DNA. With the rapid development of genome editing technology, novel editing tools such as base editing and prime editing (PE) have attracted public attention, heralding a great leap forward in this field. PE, in particular, is characterized by no need for double-strand breaks (DSBs) or homology sequence templates with variable application scenarios, including point mutations as well as insertions or deletions. With higher editing efficiency and fewer byproducts than traditional editing tools, PE holds great promise as a therapeutic strategy for human diseases. Subsequently, a growing demand for the standard construction of PE system has spawned numerous easy-to-access internet resources and tools for personalized prime editing guide RNA (pegRNA) design and off-target site prediction. In this review, we mainly introduce the innovation and evolutionary strategy of PE systems and the auxiliary tools for PE design and analysis. Additionally, its application and future potential in the clinical field have been summarized and envisaged.

摘要

基因编辑开创了疾病治疗的新时代,因为许多遗传疾病是由基因组 DNA 中的碱基对突变引起的。随着基因组编辑技术的快速发展,碱基编辑和 Prime 编辑(PE)等新型编辑工具引起了公众的关注,标志着该领域的重大飞跃。特别是 PE 不需要双链断裂(DSBs)或同源序列模板,具有可变的应用场景,包括点突变以及插入或缺失。PE 具有比传统编辑工具更高的编辑效率和更少的副产物,作为人类疾病的治疗策略具有很大的前景。随后,对 PE 系统标准构建的需求不断增长,产生了许多易于访问的互联网资源和工具,用于个性化 Prime 编辑向导 RNA(pegRNA)设计和脱靶位点预测。在这篇综述中,我们主要介绍了 PE 系统的创新和进化策略,以及用于 PE 设计和分析的辅助工具。此外,还总结和设想了其在临床领域的应用和未来潜力。

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