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TESOGENASE,一种用于增强靶向基因组整合的工程化核酸酶编辑器。

TESOGENASE, An Engineered Nuclease Editor for Enhanced Targeted Genome Integration.

作者信息

Nam Hangu, Xie Keqiang, Majumdar Ishita, Yang Shaobo, Starzyk Jakob, Lee Danna, Shan Richard, Li Jiahe, Wu Hao

出版信息

bioRxiv. 2023 Aug 29:2023.08.28.553855. doi: 10.1101/2023.08.28.553855.

Abstract

UNLABELLED

Non-viral DNA donor template has been widely used for targeted genomic integration by homologous recombination (HR). This process has become more efficient with RNA guided endonuclease editor system such as CRISPR/Cas9. Circular single stranded DNA (cssDNA) has been harnessed previously as a g enome engineering c atalyst (GATALYST) for efficient and safe targeted gene knock-in. However, the engineering efficiency is bottlenecked by the nucleoplasm trafficking and genomic tethering of cssDNA donor, especially for extra-large transgene integration. Here we developed enGager, en hanced G ATALYST a ssociated g enome e ditor system by fusion of nucleus localization signal (NLS) peptide tagged Cas9 with various single stranded DNA binding protein modules through a GFP reporter Knock-in screening. The enGager system assembles an integrative genome integration machinery by forming tripartite complex for engineered nuclease editors, sgRNA and ssDNA donors, thereby facilitate the nucleus trafficking of DNA donors and increase their active local concentration at the targeted genomic site. When applied for genome integration with cssDNA donor templates to diverse genomic loci in various cell types, these enGagers outperform unfused editors. The enhancement of integration efficiency ranges from 1.5- to more than 6-fold, with the effect being more prominent for > 4Kb transgene knock-in in primary cells. We further demonstrated that enGager mediated enhancement for genome integration is ssDNA, but less dsDNA dependent. Using one of the mini-enGagers, we demonstrated large chimeric antigen receptor (CAR) transgene integration in primary T cells with exceptional efficiency and anti-tumor function. These tripartite e ditors with s sDNA o ptimized g enome en gineering system (TESOGENASE ) add a set of novel endonuclease editors into the gene-editing toolbox for potential cell and gene therapeutic development based on ssDNA mediated non-viral genome engineering.

HIGHLIGHT

A reporter Knock-in screening establishes enGager system to identify TESOGENASE editor to improving ssDNA mediated genome integrationMini-TESOGENASEs developed by fusing Cas9 nuclease with novel ssDNA binding motifsmRNA mini-TESOGENASEs enhance targeted genome integration via various non-viral delivery approachesEfficient functional CAR-T cell engineering by mini-TESOGENASE.

摘要

未标记

非病毒DNA供体模板已被广泛用于通过同源重组(HR)进行靶向基因组整合。随着RNA引导的核酸内切酶编辑系统(如CRISPR/Cas9)的出现,这一过程变得更加高效。环状单链DNA(cssDNA)此前已被用作基因组工程催化剂(GATALYST),用于高效、安全的靶向基因敲入。然而,工程效率受到cssDNA供体的核质运输和基因组束缚的限制,特别是对于超大转基因整合。在这里,我们通过绿色荧光蛋白报告基因敲入筛选,将核定位信号(NLS)肽标记的Cas9与各种单链DNA结合蛋白模块融合,开发了enGager,即增强型GATALYST相关基因组编辑系统。enGager系统通过为工程核酸酶编辑器、sgRNA和ssDNA供体形成三方复合物,组装了一种整合基因组整合机制,从而促进DNA供体的核运输,并增加它们在靶向基因组位点的活性局部浓度。当应用于使用cssDNA供体模板将基因组整合到各种细胞类型的不同基因组位点时,这些enGager比未融合的编辑器表现更优。整合效率提高了1.5至6倍以上,对于原代细胞中大于4Kb的转基因敲入,效果更为显著。我们进一步证明,enGager介导的基因组整合增强依赖于ssDNA,但对dsDNA的依赖性较小。使用其中一种微型enGager,我们在原代T细胞中展示了大型嵌合抗原受体(CAR)转基因的整合,具有卓越的效率和抗肿瘤功能。这些具有ssDNA优化基因组工程系统的三方编辑器(TESOGENASE)为基于ssDNA介导的非病毒基因组工程的潜在细胞和基因治疗开发,在基因编辑工具箱中增加了一组新型核酸内切酶编辑器。

重点

通过报告基因敲入筛选建立enGager系统,以鉴定TESOGENASE编辑器,从而改善ssDNA介导的基因组整合

通过将Cas9核酸酶与新型ssDNA结合基序融合开发的微型TESOGENASE

mRNA微型TESOGENASE通过各种非病毒递送方法增强靶向基因组整合

微型TESOGENASE实现高效功能性CAR-T细胞工程

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