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通过将 CRISPR/Cas9 与 AAV 相结合,增加细胞内单链模板的产生可提高基因敲入效率。

Intracellular generation of single-strand template increases the knock-in efficiency by combining CRISPR/Cas9 with AAV.

机构信息

State Key Laboratory of Genetic Engineering, School of Life Sciences and Zhongshan Hospital, Fudan University, Shanghai, 200438, P. R. China.

出版信息

Mol Genet Genomics. 2018 Aug;293(4):1051-1060. doi: 10.1007/s00438-018-1437-2. Epub 2018 Apr 18.

Abstract

Targeted integration of transgenes facilitates functional genomic research and holds prospect for gene therapy. The established microhomology-mediated end-joining (MMEJ)-based strategy leads to the precise gene knock-in with easily constructed donor, yet the limited efficiency remains to be further improved. Here, we show that single-strand DNA (ssDNA) donor contributes to efficient increase of knock-in efficiency and establishes a method to achieve the intracellular linearization of long ssDNA donor. We identified that the CRISPR/Cas9 system is responsible for breaking double-strand DNA (dsDNA) of palindromic structure in inverted terminal repeats (ITRs) region of recombinant adeno-associated virus (AAV), leading to the inhibition of viral second-strand DNA synthesis. Combing Cas9 plasmids targeting genome and ITR with AAV donor delivery, the precise knock-in of gene cassette was achieved, with 13-14% of the donor insertion events being mediated by MMEJ in HEK 293T cells. This study describes a novel method to integrate large single-strand transgene cassettes into the genomes, increasing knock-in efficiency by 13.6-19.5-fold relative to conventional AAV-mediated method. It also provides a comprehensive solution to the challenges of complicated production and difficult delivery with large exogenous fragments.

摘要

目的基因的靶向整合有助于功能基因组学研究,并为基因治疗提供了前景。已建立的基于微同源介导末端连接(MMEJ)的策略可实现精确的基因敲入,且供体易于构建,但效率有限,仍需进一步提高。在这里,我们展示了单链 DNA(ssDNA)供体有助于有效提高基因敲入效率,并建立了一种实现长 ssDNA 供体在细胞内线性化的方法。我们发现 CRISPR/Cas9 系统负责打破重组腺相关病毒(AAV)倒位末端重复(ITR)区中回文结构的双链 DNA(dsDNA),导致病毒第二链 DNA 合成的抑制。将靶向基因组和 ITR 的 Cas9 质粒与 AAV 供体递送相结合,可在 HEK 293T 细胞中实现基因盒的精确敲入,其中 13-14%的供体插入事件是通过 MMEJ 介导的。这项研究描述了一种将大的单链转基因盒整合到基因组中的新方法,与传统的 AAV 介导的方法相比,基因敲入效率提高了 13.6-19.5 倍。它还为复杂的生产和具有大外源片段的困难传递提供了全面的解决方案。

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