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首页> 外文期刊>Nucleic Acids Research >Requirements for utilization of CREB binding protein by hypersensitive site two of the β-globin locus control region
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Requirements for utilization of CREB binding protein by hypersensitive site two of the β-globin locus control region

机译:β-球蛋白基因座控制区超敏位点2利用CREB结合蛋白的要求

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Strong transactivation of the β-globin genes is conferred by the β-globin locus control region (LCR), which consists of four erythroid-specific DNase I hypersensitive sites (HS1-HS4). HS2 has a powerful enhancer activity dependent upon tandem binding sites for the erythroid cell- and megakaryocyte-specific transcription factor NF-E2. An important co-activator-mediating transactivation by HS2 is the histone acetyltransferase (HAT) CREB binding protein (CBP). We showed previously that recruitment of a GAL4-CBP fusion protein to HS2 largely bypassed the requirement of the NF-E2 sites for transactivation. To determine whether GAL4-CBP recruitment is sufficient for transactivation, we assessed the importance of cis-elements within HS2. Docking of GAL4-CBP upstream of an Aγ-globin promoter lacking HS2 only weakly activated the promoter, indicating that HS2 components are required for GAL4-CBP-mediated transactivation. Sequences upstream and downstream of the NF-E2 sites were required for maximal GAL4-CBP-mediated transactivation, and HAT catalytic activity of GAL4-CBP was critical, No single factor-binding site was required for GAL4-CBP-mediated transactivation. However, deletion of two sites, a CACC site and an E-box, abolished transactivation in transient and stable transfection assays. These results suggest that NF-E2 recruits CBP as a critical step in transactivation, but additional components of HS2 are required to achieve maximal enhancer activity.
机译:β球蛋白基因座控制区(LCR)赋予了β球蛋白基因的强反式激活作用,该区域由四个类红细胞特异性DNase I超敏位点(HS1-HS4)组成。 HS2具有强大的增强子活性,取决于红系细胞和巨核细胞特异性转录因子NF-E2的串联结合位点。 HS2介导的重要的共激活因子反式激活是组蛋白乙酰转移酶(HAT)CREB结合蛋白(CBP)。我们以前表明,将GAL4-CBP融合蛋白募集到HS2很大程度上绕过了NF-E2位点反式激活的要求。为了确定GAL4-CBP募集是否足以进行反式激活,我们评估了HS2中顺式元件的重要性。在缺少HS2的Aγ-球蛋白启动子上游对接GAL4-CBP只能弱激活该启动子,表明GAL4-CBP介导的反式激活需要HS2组分。最大化GAL4-CBP介导的反式激活需要NF-E2位点的上游和下游序列,而GAL4-CBP的HAT催化活性至关重要。GAL4-CBP介导的反式激活不需要单个因子结合位点。然而,在瞬时和稳定的转染测定中,删除两个位点(CACC位点和一个E-box)消除了反式激活。这些结果表明,NF-E2募集CBP作为反式激活中的关键步骤,但要获得最大的增强子活性,还需要HS2的其他成分。

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