首页> 美国卫生研究院文献>Nucleic Acids Research >Sequences within and flanking hypersensitive sites 3 and 2 of the beta-globin locus control region required for synergistic versus additive interaction with the epsilon-globin gene promoter.
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Sequences within and flanking hypersensitive sites 3 and 2 of the beta-globin locus control region required for synergistic versus additive interaction with the epsilon-globin gene promoter.

机译:β-球蛋白基因座控制区的超敏位点3和2内和侧翼的序列需要与ε-球蛋白基因启动子协同进行加性相互作用。

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摘要

The locus control region is required for high-level, position-independent expression of mammalian beta-globin genes. It is marked by five major DNase hypersensitive sites (HSs) in a 16 kb region of chromatin, and the protein-DNA complexes that form these HSs may interact in a holocomplex that carries out the full function of the locus control region. Previous studies showed that a large rabbit DNA fragment containing both HS2 and HS3 in their native sequence context and spacing produced a much larger increase in expression of a linked reporter gene than the sum of the largest effects observed with DNA fragments containing HS2 or HS3 individually. To test whether this reflected a synergistic interaction between the 200-400 bp cores of the HSs or if this effect required additional sequences outside the cores, combinations of different restriction fragments containing HS2 or HS3 were tested for their ability to increase the expression of a hybrid epsilon-globin-luciferase reporter gene in transfected K562 cells. The results show that the human HS2 and HS3 cores do not interact either additively or synergistically with the reporter gene when juxtaposed, and separation by spacer DNA has little effect on their function. Fragments of human DNA containing cores plus flanking sequences for HS3 or HS2 show an additive effect in combination, whereas homologous fragments of rabbit DNA containing HS3 and HS2 interact synergistically. At least part of this difference localizes to the rabbit DNA fragment containing HS3, which can interact synergistically with the human DNA fragment containing HS2. The region 5' to the HS3 core plays a role both in the cooperative interaction observed with the rabbit DNA fragment and the domain-opening observed with the human DNA. A minor DNase HS maps to this region, and the pattern of sequence conservation is consistent with some difference in function between species.
机译:基因座控制区是哺乳动物β-珠蛋白基因高水平,与位置无关的表达所必需的。它的特征是在染色质的16 kb区域中有五个主要的DNase超敏位点(HS),形成这些HS的蛋白质-DNA复合物可能在完整的复合物中相互作用,该复合物执行了基因座控制区的全部功能。先前的研究表明,一个含有HS2和HS3的大兔子DNA片段在其天然序列的背景和间隔中产生的连锁报道基因表达的增加要比单独包含HS2或HS3的DNA片段所观察到的最大效应之和大得多。为了测试这是否反映了HS的200-400 bp核心之间的协同相互作用,或者该效果是否需要核心之外的其他序列,测试了含有HS2或HS3的不同限制性片段的组合增加杂种表达能力的测试转染的K562细胞中的ε-珠蛋白-萤光素酶报告基因。结果表明,人的HS2和HS3核心并排放置时,不会与报告基因发生加性或协同作用,而间隔DNA的分离对其功能几乎没有影响。含有核心以及HS3或HS2侧翼序列的人类DNA片段在组合中显示出加和效应,而含有HS3和HS2的兔DNA的同源片段则协同相互作用。这种差异的至少一部分位于含有HS3的兔子DNA片段上,该片段可以与含有HS2的人类DNA片段协同作用。 HS3核心的5'区域在用兔DNA片段观察到的协同相互作用和用人DNA观察到的结构域开放中都起作用。一个次要的DNase HS映射到该区域,并且序列保守的模式与物种之间功能上的某些差异一致。

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