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All-in-One inducible lentiviral vector systems based on drug controlled FLP recombinase

机译:基于药物控制的FLP重组酶的多合一诱导型慢病毒载体系统

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摘要

Site specific recombinases are frequently used as gene switches in transgenic animals where recombination is induced by drug treatment or by tissue specific recombinase expression. Alternatively, lentiviral gene transfer can be utilized for the genetic modification of a wide variety of cell types, albeit systems for tight control of transcriptional activity are scarce. Here, we combined lentiviral gene transfer and the development of a tightly drug-controlled FLP recombinase for the construction of "All-in-One" inducible gene expression systems. Tight control of FLP activity was achieved through N-terminal fusion with a FKBP12-derived conditional destruction domain and a C-terminal estrogen receptor binding domain making recombination dependent on the presence of Shield-1 and 4-hydroxytamoxifen. Exploiting the capacity of FLP to mediate excision and inversion, "All-in-One" lentiviral gene switch vector systems were generated where drug-induced recombination resulted in abrogation of FLP expression and subsequent overexpression or knockdown of the prototypical tumor suppressor phosphatase and tensin homolog PTEN. "All-in-One" vectors proved their functionality in a variety of hematopoietic cell lines, and primary murine bone marrow cells. Our new vector system thus combines the ease of lentiviral gene transfer and the power of site specific recombinases for analysis of gene function.
机译:位点特异性重组酶经常在转基因动物中用作基因开关,其中通过药物处理或组织特异性重组酶表达诱导重组。另外,慢病毒基因转移可用于多种细胞类型的遗传修饰,尽管缺乏严格控制转录活性的系统。在这里,我们结合了慢病毒基因转移和药物严格控制的FLP重组酶的开发,以构建“多合一”诱导型基因表达系统。通过与FKBP12衍生的条件破坏结构域和C末端雌激素受体结合结构域进行N末端融合,可以实现对FLP活性的严格控制,从而使重组依赖于Shield-1和4-hydroxytamoxifen的存在。利用FLP介导切除和倒置的能力,产生了“多合一”慢病毒基因开关载体系统,其中药物诱导的重组导致FLP表达的丧失,随后典型的抑癌基因磷酸酶和张力蛋白同源物的过表达或敲低PTEN。 “多合一”载体在多种造血细胞系和原代鼠骨髓细胞中证明了其功能。因此,我们的新载体系统结合了慢病毒基因转移的简便性和位点特异性重组酶的功能,可用于分析基因功能。

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