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双链断裂介导的基因编辑技术的腺相关病毒载体化

AAV Vectorization of DSB-mediated Gene Editing Technologies.

作者信息

Moser Rachel J, Hirsch Matthew L

机构信息

Department of Ophthalmology, Gene Therapy Center, University of North Carolina at Chapel Hill, Campus Box 7352, Chapel Hill, NC 27599-7352, USA.

出版信息

Curr Gene Ther. 2016;16(3):207-19. doi: 10.2174/1566523216666160602213738.

Abstract

Recent work both at the bench and the bedside demonstrate zinc-finger nucleases (ZFNs), CRISPR/Cas9, and other programmable site-specific endonuclease technologies are being successfully utilized within and alongside AAV vectors to induce therapeutically relevant levels of directed gene editing within the human chromosome. Studies from past decades acknowledge that AAV vector genomes are enhanced substrates for homology-directed repair in the presence or absence of targeted DNA damage within the host genome. Additionally, AAV vectors are currently the most efficient format for in vivo gene delivery with no vector related complications in >100 clinical trials for diverse diseases. At the same time, advancements in the design of custom-engineered site-specific endonucleases and the utilization of elucidated endonuclease formats have resulted in efficient and facile genetic engineering for basic science and for clinical therapies. AAV vectors and gene editing technologies are an obvious marriage, using AAV for the delivery of repair substrate and/or a gene encoding a designer endonuclease; however, while efficient delivery and enhanced gene targeting by vector genomes are advantageous, other attributes of AAV vectors are less desirable for gene editing technologies. This review summarizes the various roles that AAV vectors play in gene editing technologies and provides insight into its trending applications for the treatment of genetic diseases.

摘要

近期在实验室和临床的研究表明,锌指核酸酶(ZFNs)、CRISPR/Cas9及其他可编程的位点特异性核酸内切酶技术已成功应用于腺相关病毒(AAV)载体内部或与之协同使用,以在人类染色体中诱导具有治疗意义的定向基因编辑水平。过去几十年的研究表明,无论宿主基因组中是否存在靶向DNA损伤,AAV载体基因组都是同源定向修复的增强底物。此外,在超过100项针对各种疾病的临床试验中,AAV载体目前是体内基因递送最有效的形式,且无载体相关并发症。与此同时,定制工程化位点特异性核酸内切酶设计的进展以及已阐明的核酸内切酶形式的应用,已实现了基础科学和临床治疗中高效且简便的基因工程。AAV载体和基因编辑技术显然是天作之合,利用AAV递送修复底物和/或编码定制核酸内切酶的基因;然而,虽然载体基因组的高效递送和增强基因靶向性具有优势,但AAV载体的其他特性对基因编辑技术而言却不那么理想。本综述总结了AAV载体在基因编辑技术中所起的各种作用,并深入探讨了其在治疗遗传疾病方面的应用趋势。

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