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寻找治疗性基因组编辑的理想模板:结构优化的当前进展综述

In search of an ideal template for therapeutic genome editing: A review of current developments for structure optimization.

作者信息

Shakirova Alena, Karpov Timofey, Komarova Yaroslava, Lepik Kirill

机构信息

RM Gorbacheva Research Institute of Pediatric Oncology, Hematology and Transplantation, Pavlov University, Saint Petersburg, Russia.

Peter the Great St. Petersburg Polytechnic University, Saint Petersburg, Russia.

出版信息

Front Genome Ed. 2023 Feb 22;5:1068637. doi: 10.3389/fgeed.2023.1068637. eCollection 2023.

Abstract

Gene therapy is a fast developing field of medicine with hundreds of ongoing early-stage clinical trials and numerous preclinical studies. Genome editing (GE) now is an increasingly important technology for achieving stable therapeutic effect in gene correction, with hematopoietic cells representing a key target cell population for developing novel treatments for a number of hereditary diseases, infections and cancer. By introducing a double strand break (DSB) in the defined locus of genomic DNA, GE tools allow to knockout the desired gene or to knock-in the therapeutic gene if provided with an appropriate repair template. Currently, the efficiency of methods for GE-mediated knock-in is limited. Significant efforts were focused on improving the parameters and interaction of GE nuclease proteins. However, emerging data suggests that optimal characteristics of repair templates may play an important role in the knock-in mechanisms. While viral vectors with notable example of AAVs as a donor template carrier remain the mainstay in many preclinical trials, non-viral templates, including plasmid and linear dsDNA, long ssDNA templates, single and double-stranded ODNs, represent a promising alternative. Furthermore, tuning of editing conditions for the chosen template as well as its structure, length, sequence optimization, homology arm (HA) modifications may have paramount importance for achieving highly efficient knock-in with favorable safety profile. This review outlines the current developments in optimization of templates for the GE mediated therapeutic gene correction.

摘要

基因治疗是医学中一个快速发展的领域,有数百项正在进行的早期临床试验和大量临床前研究。基因组编辑(GE)如今是在基因校正中实现稳定治疗效果的一项日益重要的技术,造血细胞是开发多种遗传性疾病、感染和癌症新疗法的关键靶细胞群体。通过在基因组DNA的特定位点引入双链断裂(DSB),如果提供合适的修复模板,GE工具可以敲除所需基因或敲入治疗性基因。目前,GE介导的敲入方法效率有限。大量努力集中在改善GE核酸酶蛋白的参数和相互作用上。然而,新出现的数据表明,修复模板的最佳特性可能在敲入机制中起重要作用。虽然以腺相关病毒(AAV)为供体模板载体的显著例子的病毒载体仍然是许多临床前试验的主流,但非病毒模板,包括质粒和线性双链DNA、长单链DNA模板、单链和双链寡核苷酸,是一种有前途的替代方案。此外,针对所选模板调整编辑条件以及其结构、长度、序列优化、同源臂(HA)修饰对于实现具有良好安全性的高效敲入可能至关重要。本综述概述了GE介导的治疗性基因校正模板优化的当前进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d44/9992834/36cecb2311b0/fgeed-05-1068637-g001.jpg

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