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用于基因组编辑的一日TALEN组装方案及双标记系统

One-Day TALEN Assembly Protocol and a Dual-Tagging System for Genome Editing.

作者信息

Zhang Shuyan, Wang Jun, Wang Jinke

机构信息

State Key Laboratory of Bioelectronics, Southeast University, Nanjing 210096, China.

出版信息

ACS Omega. 2020 Jul 29;5(31):19702-19714. doi: 10.1021/acsomega.0c02396. eCollection 2020 Aug 11.

Abstract

This study developed a new rapid transcription activator-like effector nuclease (TALEN) preparation protocol by thoroughly redesigning the widely used Golden Gate TALEN and TAL Effector Kit 2.0. The new protocol can be used to prepare any custom 18-bp binding TALENs in just one day (about 12 h), more rapidly than CRISPR. This protocol used a set of linear monomers, a final TALE-I backbone plasmid, and a pipeline to assemble the ready-to-use TALEN expression plasmid, which were all newly developed for this study. The set of linear monomers can be easily produced and reproduced by high-fidelity polymerase chain reaction (PCR) amplification in a 96-well plate using a pair of universal primers. Most important of all, our rapid TALEN construction pipeline can easily obtain many positive colonies with high efficiency (over 80%). By preparing five pairs of TALENs targeting five NF-κB genes (RELA, RELB, CREL,NFKB1, and NFKB2) and editing these genes in different cell lines (293T, HepG2, and PANC1), this study demonstrated that the new protocol has high efficiency, reproducibility, reliability, and applicability. Moreover, this study showed that the fabricated TALEN has much higher editing efficiency than CRISPR. Finally, this study developed a dual-tagging system for simultaneously tagging target proteins and successfully edited cells with a streptavidin-binding peptide (SBP) or AviTag via homology-directed repair, which could have wide applications in protein (antigen) preparation, immunoprecipitation, and a transcription factor chromatin immunoprecipitation assay.

摘要

本研究通过对广泛使用的金门TALEN和TAL效应物试剂盒2.0进行全面重新设计,开发了一种新的快速转录激活样效应核酸酶(TALEN)制备方案。新方案可用于在一天内(约12小时)制备任何定制的18碱基对结合TALEN,比CRISPR更快。该方案使用了一组线性单体、最终的TALE-I骨架质粒以及一条用于组装即用型TALEN表达质粒的流程,这些都是为本研究新开发的。该组线性单体可通过在96孔板中使用一对通用引物进行高保真聚合酶链反应(PCR)扩增轻松生产和复制。最重要的是,我们的快速TALEN构建流程能够轻松高效地获得许多阳性菌落(效率超过80%)。通过制备针对五个NF-κB基因(RELA、RELB、CREL、NFKB1和NFKB2)的五对TALEN,并在不同细胞系(293T、HepG2和PANC1)中编辑这些基因,本研究证明了新方案具有高效性、可重复性、可靠性和适用性。此外,本研究表明,制备的TALEN比CRISPR具有更高的编辑效率。最后,本研究开发了一种双标记系统,用于同时标记目标蛋白,并通过同源定向修复用链霉亲和素结合肽(SBP)或AviTag成功编辑细胞,这在蛋白质(抗原)制备、免疫沉淀和转录因子染色质免疫沉淀分析中可能具有广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ba3/7424704/6b7220ab2ec6/ao0c02396_0001.jpg

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