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使用整合酶缺陷型慢病毒载体进行靶向基因组修饰。

Targeted genome modifications using integrase-deficient lentiviral vectors.

作者信息

Cornu Tatjana I, Cathomen Toni

机构信息

Charité Medical School, Institute of Virology (CBF), Berlin, Germany.

出版信息

Mol Ther. 2007 Dec;15(12):2107-13. doi: 10.1038/sj.mt.6300345. Epub 2007 Nov 13.

Abstract

Gene correction aims at repairing a defective gene directly in the cellular genome, which warrants tissue-specific and sustained expression of the repaired gene through its endogenous promoter. We have developed a novel system based on integrase-deficient lentiviral vectors (IDLVs) that allows us to correct an endogenous mutation using a strategy based on homologous recombination (HR). In a proof-of-concept approach, an IDLV encoding a repair template was co-delivered with an I-SceI nuclease expression vector to rescue a defective enhanced green fluorescent protein (EGFP) gene. Expression of the nuclease created a double-strand break within the target locus, which was crucial for stimulating IDLV-based gene repair. Stable gene correction was realized in up to 12% of the cells, depending on the vector dose, the nuclease expression levels, and the cell type. Genotypic analyses confirmed that gene correction was the result of genuine HR between the target locus and the IDLV repair template. This study presents IDLVs as valuable tools for introducing precise and permanent genetic modifications in human cells.

摘要

基因校正旨在直接在细胞基因组中修复缺陷基因,这需要通过其内源启动子实现修复基因的组织特异性和持续表达。我们开发了一种基于整合酶缺陷型慢病毒载体(IDLV)的新型系统,该系统使我们能够使用基于同源重组(HR)的策略校正内源突变。在一个概念验证方法中,将编码修复模板的IDLV与I-SceI核酸酶表达载体共同递送,以挽救缺陷的增强型绿色荧光蛋白(EGFP)基因。核酸酶的表达在靶位点内产生双链断裂,这对于刺激基于IDLV的基因修复至关重要。根据载体剂量、核酸酶表达水平和细胞类型,在高达12%的细胞中实现了稳定的基因校正。基因型分析证实,基因校正是靶位点与IDLV修复模板之间真正的HR的结果。本研究表明,IDLV是在人类细胞中引入精确和永久基因修饰的有价值工具。

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