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piggyBac Transposon plus Insulators Overcome Epigenetic Silencing to Provide for Stable Signaling Pathway Reporter Cell Lines

机译:piggyBac转座子加绝缘子可克服表观遗传沉默从而提供稳定的信号通路记者细胞系

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摘要

Genetically modified hematopoietic progenitors represent an important testing platform for a variety of cell-based therapies, pharmaceuticals, diagnostics and other applications. Stable expression of a transfected gene of interest in the cells is often obstructed by its silencing. DNA transposons offer an attractive non-viral alternative of transgene integration into the host genome, but their broad applicability to leukocytes and other “transgene unfriendly” cells has not been fully demonstrated. Here we assess stability of piggyBac transposon-based reporter expression in murine prostate adenocarcinoma TRAMP-C2, human monocyte THP-1 and erythroleukemia K562 cell lines, along with macrophages and dendritic cells (DCs) that have differentiated from the THP-1 transfects. The most efficient and stable reporter activity was observed for combinations of the transposon inverted terminal repeats and one 5’- or two cHS4 core insulators flanking a green fluorescent protein reporter construct, with no detectable silencing over 10 months of continuous cell culture in absence of any selective pressure. In monocytic THP-1 cells, the functional activity of luciferase reporters for NF-κB, Nrf2, or HIF-1α has not decreased over time and was retained following differentiation into macrophages and DCs, as well. These results imply pB as a versatile tool for gene integration in monocytic cells in general, and as a convenient access route to DC-based signaling pathway reporters suitable for high-throughput assays, in particular.
机译:转基因造血祖细胞代表了多种基于细胞的疗法,药物,诊断方法和其他应用的重要测试平台。转染的目的基因在细胞中的稳定表达通常被其沉默所阻碍。 DNA转座子是将转基因整合到宿主基因组中的一种有吸引力的非病毒替代方法,但尚未完全证明其对白细胞和其他“转基因不友好”细胞的广泛适用性。在这里,我们评估了基于piggyBac转座子的报告基因在鼠前列腺腺癌TRAMP-C2,人单核细胞THP-1和红白血病K562细胞系以及已从THP-1转染中分化出来的巨噬细胞和树突状细胞(DC)的稳定性。对于转座子倒置末端重复序列和一个5'-或两个cHS4核心绝缘子位于绿色荧光蛋白报告基因构建体的组合,观察到最有效和稳定的报告基因活性,在连续10个月的连续细胞培养中,没有任何沉默,没有检测到沉默选择压力。在单核细胞THP-1细胞中,萤光素酶报道分子对NF-κB,Nrf2或HIF-1α的功能活性并未随时间降低,并且在分化为巨噬细胞和DC后也得以保留。这些结果表明,pB通常是单核细胞中基因整合的通用工具,并且是通向适用于高通量分析的,基于DC的信号通路报告子的便捷途径。

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