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首页> 外文期刊>Genes to cells : >Locus control region elements HS2 and HS3 in combination with chromatin boundaries confer high-level expression of a human beta-globin transgene in a centromeric region.
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Locus control region elements HS2 and HS3 in combination with chromatin boundaries confer high-level expression of a human beta-globin transgene in a centromeric region.

机译:基因座控制区元件HS2和HS3与染色质边界结合赋予人β-珠蛋白转基因在着丝粒区域中高水平表达。

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摘要

Expression constructs are subject to position-effects in transgenic assays unless they harbour elements that protect them from negative or positive influences exerted by chromatin at the site of integration. Locus control regions (LCRs) and boundary elements are able to protect from position effects by preventing heterochromatization of linked genes. The LCR in the human beta-globin gene locus is located far upstream of the genes and composed of several erythroid specific DNase I hypersensitive (HS) sites. Previous studies demonstrated that the LCR HS sites act synergistically to confer position-independent and high-level globin gene expression at different integration sites in transgenic mice. Here we show that LCR HS sites 2 and 3, in combination with boundary elements derived from the chicken beta-globin gene locus, confer high-level human beta-globin gene expression in different chromosomal integration sites in transgenic mice. Moreover, we found that the construct is accessible to nucleases and highly expressed when integrated in a centromeric region. These results demonstrate that the combination of enhancer, chromatin opening and boundary activities can establish independent expression units when integrated into chromatin.
机译:表达构建体在转基因测定中会受到位置效应的影响,除非它们具有保护它们免受整合位点染色质施加的负面或正面影响的元件。基因座控制区(LCR)和边界元件能够通过防止连锁基因的异染色质而免受位置影响。人类β-珠蛋白基因位点中的LCR位于基因的上游,并且由几个类红细胞特异性DNase I超敏(HS)位点组成。先前的研究表明,LCR HS位点具有协同作用,可在转基因小鼠的不同整合位点上赋予位置独立和高水平的球蛋白基因表达。在这里,我们显示LCR HS位点2和3,与源自鸡β-珠蛋白基因位点的边界元素结合,在转基因小鼠的不同染色体整合位点中赋予高水平的人类β-珠蛋白基因表达。此外,我们发现该构建体可被核酸酶接近并且当整合在着丝粒区域中时高度表达。这些结果表明,当整合到染色质中时,增强子,染色质开放和边界活性的组合可以建立独立的表达单位。

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