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The Impact of cHS4 Insulators on DNA Transposon Vector Mobilization and Silencing in Retinal Pigment Epithelium Cells

机译:chs4型电力机车绝缘子上DNa转座子载体动员和沉默在视网膜色素上皮细胞的影响

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摘要

DNA transposons have become important vectors for efficient non-viral integration of transgenes into genomic DNA. The Sleeping Beauty (SB), piggyBac (PB), and Tol2 transposable elements have distinct biological properties and currently represent the most promising transposon systems for animal transgenesis and gene therapy. A potential obstacle, however, for persistent function of integrating vectors is transcriptional repression of the element and its genetic cargo. In this study we analyze the insulating effect of the 1.2-kb 5′-HS4 chicken β-globin (cHS4) insulator element in the context of SB, PB, and Tol2 transposon vectors. By examining transgene expression from genomically inserted transposon vectors encoding a marker gene driven by a silencing-prone promoter, we detect variable levels of transcriptional silencing for the three transposon systems in retinal pigment epithelium cells. Notably, the PB system seems less vulnerable to silencing. Incorporation of cHS4 insulator sequences into the transposon vectors results in 2.2-fold and 1.5-fold increased transgene expression levels for insulated SB and PB vectors, respectively, but an improved persistency of expression was not obtained for insulated transgenes. Colony formation assays and quantitative excision assays unveil enhanced SB transposition efficiencies by the inclusion of the cHS4 element, resulting in a significant increase in the stable transfection rate for insulated SB transposon vectors in human cell lines. Our findings reveal a positive impact of cHS4 insulator inclusion for SB and PB vectors in terms of increased transgene expression levels and improved SB stable transfection rates, but also the lack of a long-term protective effect of the cHS4 insulator against progressive transgene silencing in retinal pigment epithelium cells.
机译:DNA转座子已成为重要的载体,可有效地将转基因非病毒整合到基因组DNA中。睡美人(SB),piggyBac(PB)和Tol2转座因子具有独特的生物学特性,目前代表了用于动物转基因和基因治疗的最有希望的转座子系统。然而,整合载体的持久功能的潜在障碍是元件及其遗传物质的转录抑制。在这项研究中,我们分析了在SB,PB和Tol2转座子载体的背景下1.2kb 5'-HS4鸡β-珠蛋白(cHS4)绝缘子元件的绝缘作用。通过检查从基因组插入的转座子载体的转基因表达,转座子载体编码由沉默易感的启动子驱动的标记基因,我们检测了视网膜色素上皮细胞中三个转座子系统的转录沉默水平。值得注意的是,PB系统似乎更不容易受到干扰。将cHS4绝缘子序列掺入转座子载体中,分别使绝缘的SB和PB载体的转基因表达水平提高2.2倍和1.5倍,但是对于绝缘的转基因,表达的持久性未得到改善。集落形成分析和定量切除分析揭示了通过包含cHS4元素增强的SB转座效率,从而导致人细胞系中绝缘SB转座子载体的稳定转染率显着提高。我们的发现揭示了cHS4绝缘子对SB和PB载体的积极影响,包括转基因表达水平的提高和SB稳定转染率的提高,但是cHS4绝缘子对视网膜中渐进性转基因沉默的长期保护作用缺乏色素上皮细胞。

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