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EXCISION OF SPECIFIC DNA-SEQUENCES FROM INTEGRATED RETROVIRAL VECTORS VIA SITE-SPECIFIC RECOMBINATION

机译:通过位点特异性重组从整合型逆转录病毒载体中提取特定的DNA序列

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摘要

Vectors for gene transfer and gene therapy were developed which combine the advantages of the integrase and recombinase systems. This was achieved by inserting two loxP sites for specific DNA excision into an MESV based retroviral vector. We show that this 'retroviral lex system' allows the infection of cells and the expression of transferred genes, In addition, we constructed an efficient retrovirus-based expression system for a modified Cre recombinase. Functional tests for DNA excision from integrated retroviral lox vectors were performed by the use of a negative selectable marker gene (thymidine kinase). Cre expression in cells infected with retroviral lox vectors and subsequent BrdU selection for cells in which site-specific recombination has occurred results in large numbers of independent cell clones. These results were confirmed by detailed molecular analysis, In addition we developed retroviral suicide vectors in which the enhancer/promoter elements of both LTRs were replaced by lox sequences. We show that lex-sequences located in the LTRs of retroviral vectors are stable during retroviral replication. Potential applications of this system would be the establishment of revertants of retrovirus-infected cells by controlled excision of nearly the complete proviral DNA.
机译:开发了用于基因转移和基因治疗的载体,其结合了整合酶和重组酶系统的优点。这是通过将两个用于特异性DNA切除的loxP位点插入基于MESV的逆转录病毒载体中来实现的。我们表明,这种“逆转录病毒lex系统”可以感染细胞并转移基因的表达。此外,我们为修饰的Cre重组酶构建了基于逆转录病毒的高效表达系统。通过使用阴性选择标记基因(胸苷激酶)对整合的逆转录病毒lox载体进行的DNA切除功能测试。在被逆转录病毒lox载体感染的细胞中Cre表达以及随后对发生位点特异性重组的细胞进行BrdU选择会导致大量独立的细胞克隆。通过详细的分子分析证实了这些结果。此外,我们开发了逆转录病毒自杀载体,其中两个LTR的增强子/启动子元件都被lox序列取代。我们显示,位于逆转录病毒载体的LTRs中的lex序列在逆转录病毒复制过程中是稳定的。该系统的潜在应用将是通过控制切除几乎完整的原病毒DNA来建立逆转录病毒感染细胞的回复子。

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