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Structural and Functional Cross-Talk between a Distant Enhancer and the ɛ-Globin Gene Promoter Shows Interdependence of the Two Elements in Chromatin

机译:远距离增强子和ɛ-球蛋白基因启动子之间的结构和功能交叉讨论显示了染色质中两个元素的相互依赖性

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摘要

We investigated the requirements for enhancer-promoter communication by using the human β-globin locus control region (LCR) DNase I-hypersensitive site 2 (HS2) enhancer and the ɛ-globin gene in chromatinized minichromosomes in erythroid cells. Activation of globin genes during development is accompanied by localized alterations of chromatin structure, and CACCC binding factors and GATA-1, which interact with both globin promoters and the LCR, are believed to be critical for globin gene transcription activation. We found that an HS2 element mutated in its GATA motif failed to remodel the ɛ-globin promoter or activate transcription yet HS2 nuclease accessibility did not change. Accessibility and transcription were reduced at promoters with mutated GATA-1 or CACCC sites. Strikingly, these mutations also resulted in reduced accessibility at HS2. In the absence of a globin gene, HS2 is similarly resistant to nuclease digestion. In contrast to observations in Saccharomyces cerevisiae, HS2-dependent promoter remodeling was diminished when we mutated the TATA box, crippling transcription. This mutation also reduced HS2 accessibility. The results indicate that the ɛ-globin promoter and HS2 interact both structurally and functionally and that both upstream activators and the basal transcription apparatus contribute to the interaction. Further, at least in this instance, transcription activation and promoter remodeling by a distant enhancer are not separable.
机译:我们研究了通过使用人类β-球蛋白基因座控制区(LCR)DNase I-超敏位点2(HS2)增强子和红细胞中染色微染色体中的β-球蛋白基因对增强子-启动子通讯的要求。在发育过程中,珠蛋白基因的激活伴随着染色质结构的局部改变,并且与球蛋白启动子和LCR相互作用的CACCC结合因子和GATA-1被认为对珠蛋白基因转录激活至关重要。我们发现,在其GATA基序中发生突变的HS2元件无法重塑β-珠蛋白启动子或激活转录,但HS2核酸酶的可及性并未改变。具有突变的GATA-1或CACCC位点的启动子的可及性和转录降低。令人惊讶的是,这些突变还导致HS2的可及性降低。在缺少球蛋白基因的情况下,HS2同样对核酸酶消化具有抗性。与在酿酒酵母中观察到的相反,当我们突变TATA框并破坏转录时,HS2依赖的启动子重塑减少了。该突变也降低了HS2的可及性。结果表明,β-珠蛋白启动子和HS2在结构和功能上都相互作用,并且上游激活剂和基础转录装置都参与了相互作用。此外,至少在这种情况下,远距离增强子的转录激活和启动子重塑是不可分离的。

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