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不同 CRISPR/Cas9 递送方法诱导的插入缺失谱动力学。

Dynamics of Indel Profiles Induced by Various CRISPR/Cas9 Delivery Methods.

机构信息

Wellcome Trust Sanger Institute, Hinxton, Cambridge, United Kingdom.

Departments of Cellular and Molecular Medicine and Odontology, Copenhagen Center for Glycomics, University of Copenhagen, Copenhagen, Denmark.

出版信息

Prog Mol Biol Transl Sci. 2017;152:49-67. doi: 10.1016/bs.pmbts.2017.09.003. Epub 2017 Nov 6.

DOI:10.1016/bs.pmbts.2017.09.003
PMID:29150004
Abstract

The introduction of CRISPR/Cas9 gene editing in mammalian cells is a scientific breakthrough, which has greatly affected basic research and gene therapy. The simplicity and general access to CRISPR/Cas9 reagents has in an unprecedented manner "democratized" gene targeting in biomedical research, enabling genetic engineering of any gene in any cell, tissue, organ, and organism. The ability for fast, precise, and efficient profiling of the double-stranded break induced insertions and deletions (indels), mediated by any of the available programmable nucleases, is paramount to any given gene targeting approach. In this study we review the most commonly used indel detection methods and using a robust, sensitive, and cost efficient Indel Detection by Amplicon Analysis method, we have investigated the impact of the most commonly used CRISPR/Cas9 delivery formats, including lentivirus transduction, plasmid lipofection, and ribo nuclear protein electroporation, on the dynamics of indel profile formation. We observe rapid indel formation using RNP electroporation, especially with synthetic stabilized gRNA, as well as long-term decline in overall indel frequency with lipofectamine-based, plasmid transfection methods. Most methods reach peak editing on day 2-3 postdelivery. Furthermore, we find relative increase in frequency of larger size indels (>6bp) under condition of persistent editing using stably integrated lentiviral gRNA and Cas9 vectors.

摘要

CRISPR/Cas9 基因编辑技术在哺乳动物细胞中的应用是一项重大的科学突破,它极大地影响了基础研究和基因治疗。CRISPR/Cas9 试剂的简单易用和广泛获取,以空前的方式“民主化”了生物医学研究中的基因靶向,使任何细胞、组织、器官和生物体中的任何基因都可以进行基因工程改造。快速、精确和有效地分析任何可编程核酸酶介导的双链断裂诱导的插入和缺失(indels),对于任何给定的基因靶向方法都是至关重要的。在这项研究中,我们回顾了最常用的 indel 检测方法,并使用一种强大、敏感和具有成本效益的通过扩增子分析的 Indel 检测方法,研究了最常用的 CRISPR/Cas9 递送格式,包括慢病毒转导、质粒脂质体转染和核糖核蛋白电穿孔,对 indel 图谱形成动力学的影响。我们观察到使用 RNP 电穿孔可以快速形成 indel,特别是使用合成稳定的 gRNA 时,以及使用基于脂质体的质粒转染方法时整体 indel 频率的长期下降。大多数方法在递送后第 2-3 天达到编辑峰值。此外,我们发现使用稳定整合的慢病毒 gRNA 和 Cas9 载体进行持续编辑时,较大大小的 indels(>6bp)的频率相对增加。

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