Recillas-Targa F, Bell A C, Felsenfeld G
Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 1999 Dec 7;96(25):14354-9. doi: 10.1073/pnas.96.25.14354.
It is thought that insulators demarcate transcriptionally and structurally independent chromatin domains. Insulators are detected by their ability to block enhancer-promoter interactions in a directional manner, and protect a transgene from position effects. Most studies are performed in stably transformed cells or organisms. Here we analyze the enhancer-blocking activity of the chicken beta-globin insulator in transient transfection experiments in both erythroid and nonerythroid cell lines. We show that four tandem copies of a 90-bp fragment of this insulator were able to block an enhancer in these experiments. In circular plasmids, placement on either side of the enhancer reduced activity, but when the plasmid was linearized, the enhancer-blocking activity was observed only when the insulator was placed between the promoter and the enhancer. These observations are consistent with the position-dependent enhancer-blocking activity of the insulator observed in stable transformation experiments.
据认为,绝缘子划分转录和结构上独立的染色质结构域。绝缘子通过其以定向方式阻断增强子 - 启动子相互作用的能力来检测,并保护转基因免受位置效应的影响。大多数研究是在稳定转化的细胞或生物体中进行的。在这里,我们在红细胞系和非红细胞系的瞬时转染实验中分析了鸡β-珠蛋白绝缘子的增强子阻断活性。我们表明,该绝缘子90 bp片段的四个串联拷贝能够在这些实验中阻断增强子。在环状质粒中,放置在增强子两侧会降低活性,但当质粒线性化时,仅当绝缘子置于启动子和增强子之间时才观察到增强子阻断活性。这些观察结果与在稳定转化实验中观察到的绝缘子的位置依赖性增强子阻断活性一致。