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Characterization of the cHS4 insulator in mouse embryonic stem cells

机译:小鼠胚胎干细胞中CHS4绝缘子的表征

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摘要

Synthetic biology circuits are often constructed with multiple gene expression units assembled in close proximity, and they can be used to perform complex functions in embryonic stem cells (ESCs). However, mutual interference between transcriptional units has not been well studied in mouse ESCs. To assess the efficiency of insulators at suppressing promoter interference in mouse ESCs, we used an evaluation scheme in which a tunable tetracycline response element promoter is connected to a constant Nanog promoter. The chicken hypersensitive site 4 (cHS4) insulator, widely used both for enhancer blocking and for barrier insulation in?vitro and in?vivo , was positioned between the two expression units for assessment. By inserting the cassette into various loci of the mouse ESC genome with PiggyBac transposon, we were able to quantitatively examine the protective effect of cHS4 by gradually increasing the transcriptional activity of the tetracycline response element promoter with doxycycline and then measuring the transcriptional activity of the Nanog promoter. Our results indicate that the cHS4 insulator has minimal insulating effects on promoter interference in mouse ESCs. Further studies show that the cHS4 insulation effect may be promoter specific and related to interaction with CCCTC‐binding factor‐mediated loop formation. In addition, we also compared DNA transposition and transgene expression with or without the cHS4 insulator using well‐established ESC reporters. The results indicate that cHS4 has no apparent effects on DNA transposition and transgene expression levels, but exerts modest protective effects on long‐term transgene silencing.
机译:合成生物学电路通常构造有元件紧密地组装的多基因表达单元,并且它们可用于在胚胎干细胞(ESC)中进行复杂功能。然而,转录单元之间的相互干扰尚未在鼠标ESC中进行很好地研究。为了评估抑制小鼠ESC的启动子干扰时绝缘体的效率,我们使用了一种评价方案,其中可调谐四环素响应元件启动子连接到恒定的纳米促进剂。鸡过敏部位4(CHS4)绝缘体广泛用于增强器阻塞和用于体外和禁区的阻隔绝缘,在两种表达单位之间定位进行评估。通过用Piggybac转基因插入小鼠ESC基因组的各种基因组的各种基因组,我们能够通过逐渐增加四环响应元素启动子与强霉素的转录活性来定量检查CHS4的保护作用,然后测量纳米的转录活性启动子。我们的结果表明,CHS4绝缘体对小鼠ESC的启动子干扰具有最小的绝缘作用。进一步的研究表明,CHS4绝缘效果可以是特异性的启动子和与与CCCTC结合因子介导的环形形成的相互作用有关。此外,我们还使用良好成熟的ESC记者将DNA转置和转基因表达与CHS4绝缘体进行比较。结果表明,CHS4对DNA转置和转基因表达水平没有明显影响,但对长期转基因沉默产生适度的保护作用。

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