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Intronic and flanking sequences are required to silence enhancement of an embryonic beta-type globin gene.

机译:需要内含子和侧翼序列来沉默增强胚胎β型球蛋白基因。

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摘要

In the course of studying regulatory elements that affect avian embryonic rho-globin gene expression, the multipotential hematopoietic cell line K562 was transiently transfected with various rho-globin gene constructs containing or lacking an avian erythroid enhancer element. Enhanced levels of rho gene expression were seen from those constructs containing an enhancer element and minimal 5' or 3' flanking rho sequences but were not seen from enhancer-containing constructs that included extensive 5' and 3' flanking sequences. Deletion analysis localized 5' and 3' "enhancer-silencing elements" to -2140 to -2000 and +1865 to +2180 relative to the mRNA cap site. A third element required for enhancer silencing was identified within the second intron of the rho gene. The treatment of K562 cells with hemin, which induces erythroid differentiation, partially alleviated the enhancer-silencing effect. The silencer elements were able to block enhancement from a murine erythroid enhancer, but not from a nonerythroid enhancer. Electrophoretic mobility shift assays demonstrated that the transcription factor YY1 is able to bind both the 5' and 3' enhancer silencer elements; a point mutation of the single overlapping YY1/NF-Y binding site in the 3' element completely abolished the enhancer-silencing effect. These results demonstrate a complex enhancer silencer that requires 5' flanking, intronic, and 3' flanking sequences for a single regulatory effect on a eukaryotic gene.
机译:在研究影响禽类胚胎rho-globin基因表达的调控元件的过程中,多能性造血细胞系K562被含有或缺乏禽类红系增强子元件的各种rho-globin基因构建体瞬时转染。从含有增强子元件和最小的5'或3'侧翼rho序列的那些构建体中观察到rho基因表达的增强水平,但是从包括广泛的5'和3'侧翼序列的含增强子的构建体中未看到。缺失分析相对于mRNA帽位点将5'和3'“增强子沉默元件”定位于-2140至-2000和+1865至+2180。在rho基因的第二个内含子中鉴定了增强子沉默所需的第三个元件。用诱导血红素分化的血红素处理K562细胞,部分减轻了增强子沉默的作用。消音元件能够阻止来自鼠类红系增强剂的增强,但不能阻止非类红系增强剂的增强。电泳迁移率迁移分析表明,转录因子YY1能够结合5'和3'增强子沉默子元件。 3'元件中单个重叠的YY1 / NF-Y结合位点的点突变完全消除了增强子沉默作用。这些结果表明,复杂的增强子沉默子需要5'侧翼,内含子和3'侧翼序列才能对真核基因产生单一调控作用。

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