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双向碱基编辑:将精准性与多功能性相结合用于基因组编辑。

Bidirectional Prime Editing: Combining Precision with Versatility for Genome Editing.

作者信息

Choudhery Mahmood S, Arif Taqdees, Mahmood Ruhma

机构信息

Department of Human Genetics & Molecular Biology, University of Health Sciences, Lahore, Pakistan.

Allama Iqbal Medical College, Jinnah Hospital, Lahore, Pakistan.

出版信息

Cell Reprogram. 2025 Feb;27(1):10-23. doi: 10.1089/cell.2024.0075. Epub 2024 Dec 17.

Abstract

Genome editing techniques have potential to revolutionize the field of life sciences. Several limitations associated with traditional gene editing techniques have been resolved with the development of prime editors that precisely edit the DNA without double-strand breaks (DSBs). To further improve the efficiency, several modified versions of prime editing (PE) system have been introduced. Bi-directional PE (Bi-PE), for example, uses two PE guide RNAs enabling broad and improved editing efficiency. It has the potential to alter, delete, integrate, and replace larger genome sequences and edit multiple bases at the same time. This review aims to discuss the typical gene editing methods that offer DSB-mediated repair mechanisms, followed by the latest advances in genome editing technologies with non-DSB-mediated repair. The review specifically focuses on Bi-PE being an efficient tool to edit the human genome. In addition, the review discusses the applications, limitations, and future perspectives of Bi-PE for gene editing.

摘要

基因组编辑技术有潜力彻底改变生命科学领域。随着能够精确编辑DNA而不产生双链断裂(DSB)的引导编辑器的发展,与传统基因编辑技术相关的一些局限性已得到解决。为了进一步提高效率,人们引入了几种引导编辑(PE)系统的改进版本。例如,双向PE(Bi-PE)使用两个PE引导RNA,可实现广泛且更高的编辑效率。它有潜力改变、删除、整合和替换更大的基因组序列,并同时编辑多个碱基。本综述旨在讨论提供DSB介导修复机制的典型基因编辑方法,随后介绍非DSB介导修复的基因组编辑技术的最新进展。该综述特别关注Bi-PE作为一种编辑人类基因组的有效工具。此外,该综述还讨论了Bi-PE在基因编辑中的应用、局限性和未来前景。

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