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Chromatin Insulator Elements Block Transgene Silencing in Engineered Human Embryonic Stem Cell Lines at a Defined Chromosome 13 Locus

机译:染色质绝缘子元素阻止转基因沉默在工程人类胚胎干细胞系中定义的染色体13位点。

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摘要

Lineage reporters of human embryonic stem cell (hESC) lines are useful for differentiation studies and drug screening. Previously, we created reporter lines driven by an elongation factor 1 alpha (EF1α) promoter at a chromosome 13q32.3 locus in the hESC line WA09 and an abnormal hESC line BG01V in a site-specific manner. Expression of reporters in these lines was maintained in long-term culture at undifferentiated state. However, when these cells were differentiated into specific lineages, reduction in reporter expression was observed, indicating transgene silencing. To develop an efficient and reliable genetic engineering strategy in hESCs, we used chromatin insulator elements to flank single-copy transgenes and integrated the combined expression constructs via PhiC31/R4 integrase-mediated recombination technology to the chromosome 13 locus precisely. Two copies of cHS4 double-insulator sequences were placed adjacent to both 5′ and 3′ of the promoter reporter constructs. The green fluorescent protein (GFP) gene was driven by EF1α or CMV early enhancer/chicken β actin (CAG) promoter. In the engineered hESC lines, for both insulated CAG-GFP and EF1α-GFP, constitutive expression at the chromosome 13 locus was maintained during prolonged culture and in directed differentiation assays toward diverse types of neurons, pancreatic endoderm, and mesodermal progeny. In particular, described here is the first normal hESC fluorescent reporter line that robustly expresses GFP in both the undifferentiated state and throughout dopaminergic lineage differentiation. The dual strategy of utilizing insulator sequences and integration at the constitutive chromosome 13 locus ensures appropriate transgene expression. This is a valuable tool for lineage development study, gain- and loss-of-function experiments, and human disease modeling using hESCs.
机译:人类胚胎干细胞(hESC)系的谱系报道者可用于分化研究和药物筛选。以前,我们以位点特异性的方式在hESC系WA09的染色体13q32.3基因座和异常hESC系BG01V的染色体13q32.3基因座上创建了由延伸因子1α(EF1α)启动子驱动的报告基因系。这些系中报道基因的表达在长期培养中保持未分化状态。但是,当这些细胞分化成特定谱系时,观察到报告基因表达降低,表明转基因沉默。为了在hESC中开发一种有效且可靠的基因工程策略,我们使用了染色质绝缘子元件来修饰单拷贝转基因,并通过PhiC31 / R4整合酶介导的重组技术将组合表达构建体准确整合到13号染色体基因座。将cHS4双重绝缘子序列的两个副本与启动子报告基因构建体的5'和3'相邻放置。绿色荧光蛋白(GFP)基因由EF1α或CMV早期增强子/鸡β肌动蛋白(CAG)启动子驱动。在工程hESC品系中,对于绝缘的CAG-GFP和EF1α-GFP,在长期培养期间以及在针对各种类型的神经元,胰内胚层和中胚层后代的定向分化测定中,都维持了第13号染色体上的组成型表达。特别是,这里描述的是第一个正常的hESC荧光报告基因系,在未分化状态和整个多巴胺能谱系分化过程中都能稳定表达GFP。利用绝缘子序列和在组成性13号染色体位点整合的双重策略确保适当的转基因表达。这是用于沿袭发展研究,功能获得和丧失实验以及使用hESC进行人类疾病建模的宝贵工具。

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