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β-Globin locus control region HS2 and HS3 interact structurally and functionally

机译:β-球蛋白基因座控制区HS2和HS3在结构和功能上相互作用

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摘要

The overall structure of the DNase I hypersensitive sites (HSs) that comprise the β-globin locus control region (LCR) is highly conserved among mammals, implying that the HSs have conserved functions. However, it is not well understood how the LCR HSs, either individually or collectively, activate transcription. We analyzed the interactions of HS2, HS3 and HS4 with the human ε- and β-globin genes in chromatinized episomes in fetal/embryonic K562 cells. Only HS2 activates transcription of the ε-globin gene, while all three HSs activate the β-globin gene. HS3 stimulates the β-globin gene constitutively, but HS2 and HS4 transactivation requires expression of the transcription factor EKLF, which is not present in K562 cells but is required for β-globin expression in vivo. To begin addressing how the individual HSs may interact with one another in a complex, we linked the β-globin gene to both the HS2 and HS3. HS2 and HS3 together resulted in synergistic stimulation of β-globin transcription. Unexpectedly, mutated, inactive forms of HS2 impeded the activation of the β-globin gene by HS3. Thus, there appear to be distinct interactions among the HSs and between the HSs and the globin genes. These preferential, non-exclusive interactions may underlie an important structural and functional cooperativity among the regulatory sequences of the β-globin locus in vivo.
机译:包含β-球蛋白基因座控制区(LCR)的DNase I超敏位点(HSs)的总体结构在哺乳动物中高度保守,这意味着HS具有保守的功能。然而,人们还不太了解LCR HS如何单独或共同激活转录。我们分析了胎儿/胚胎K562细胞中染色质化附加体中HS2,HS3和HS4与人ε-和β-珠蛋白基因的相互作用。只有HS2激活ε-珠蛋白基因的转录,而所有三个HS都激活β-珠蛋白基因。 HS3组成性地刺激β-珠蛋白基因,但是HS2和HS4反式激活需要表达转录因子EKLF,该因子在K562细胞中不存在,但对于体内β-珠蛋白的表达是必需的。为了解决单个HS之间如何在复合物中相互作用的问题,我们将β珠蛋白基因与HS2和HS3都连接在一起。 HS2和HS3共同导致β珠蛋白转录的协同刺激。出乎意料的是,HS2的突变,无活性形式阻碍了HS3对β-珠蛋白基因的激活。因此,在HS之间以及HS与球蛋白基因之间似乎存在明显的相互作用。这些优先的,非排他性的相互作用可能是体内β-珠蛋白基因座调控序列之间重要的结构和功能协同作用的基础。

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