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Improved methods for the generation of human gene knockout and knockin cell lines

机译:产生人类基因敲除和敲入细胞系的改进方法

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Recent studies have demonstrated the utility of recombinant adeno-associated viral (rAAV) vectors in the generation of human knockout cell lines. The efficiency with which such cell lines can be generated using rAAV, in comparison with more extensively described plasmid-based approaches, has not been directly tested. In this report, we demonstrate that targeting constructs delivered by rAAV vectors were nearly 25-fold more efficient than transfected plasmids that target the same exon. In addition, we describe a novel vector configuration which we term the synthetic exon promoter trap (SEPT). This targeting element further improved the efficiency of knockout generation and uniquely facilitated the generation of knockin alterations. An rAAV-based SEPT targeting construct was used to transfer a mutant CTNNB1 allele, encoding an oncogenic form of beta-catenin, from one cell line to another. This versatile method was thus shown to facilitate the efficient integration of small, defined sequence alterations into the chromosomes of cultured human cells.
机译:最近的研究表明重组腺相关病毒(rAAV)载体在人类基因敲除细胞系的产生中的效用。与更广泛描述的基于质粒的方法相比,使用rAAV产生此类细胞系的效率尚未得到直接测试。在本报告中,我们证明了由rAAV载体递送的靶向构建体比靶向相同外显子的转染质粒效率高出近25倍。另外,我们描述了一种新颖的载体构型,我们称其为合成外显子启动子阱(SEPT)。该靶向元件进一步提高了敲除产生的效率,并独特地促进了敲入改变的产生。基于rAAV的SEPT靶向构建体用于将突变的CTNNB1等位基因从一种细胞系转移到编码一种β-catenin致癌形式的等位基因。因此显示出这种通用方法有助于将小的,确定的序列改变有效地整合到培养的人类细胞的染色体中。

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