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首页> 外文期刊>Molecular and Cellular Biology >Functional synergy and physical interactions of the erythroid transcription factor GATA-1 with the Krüppel family proteins Sp1 and EKLF.
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Functional synergy and physical interactions of the erythroid transcription factor GATA-1 with the Krüppel family proteins Sp1 and EKLF.

机译:红系转录因子GATA-1与Krüppel家族蛋白Sp1和EKLF的功能协同作用和物理相互作用。

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An unresolved aspect of current understanding of erythroid cell-specific gene expression relates to how a limited number of transcriptional factors cooperate to direct high-level expression mediated by cis-regulatory elements separated over large distances within globin loci. In this report, we provide evidence that GATA-1, the major erythroid transcription factor, activates transcription in a synergistic fashion with two Krüppel family factors, the ubiquitous protein Sp1 and the erythroid-restricted factor EKLF (erythroid Krüppel-like factor), which recognize GC and/or GT/CACC motifs. Binding sites for both GATA-1 and these Krüppel proteins (especially Sp1) are found in close association in the promoters and enhancers of numerous erythroid cell-expressed genes and appear to cooperate in directing their expression. We have shown that GATA-1 interacts physically with Sp1 and EKLF and that interactions are mediated through their respective DNA-binding domains. Moreover, we show that GATA-1 and Sp1 synergize from a distance in constructs designed to mimic the architecture of globin locus control regions and downstream globin promoters. Finally, the formation of GATA-1-SP1 complexes was demonstrated in vivo by the ability of Sp1 to recruit GATA-1 to a promoter in the absence of GATA-binding sites. These experiments provide the first evidence for functionally important protein-protein interactions involved in erythroid cell-specific expression and suggest a mechanism by which DNA loops between locus control regions and globin promoters (or enhancers) might be formed or stabilized.
机译:当前对类红细胞特异性基因表达的理解的一个未解决的方面涉及有限数量的转录因子如何协同作用以指导由珠蛋白基因座内相隔很长距离的顺式调节元件介导的高水平表达。在本报告中,我们提供的证据表明,主要的类红细胞转录因子GATA-1与两种Krüppel家族因子,普遍存在的蛋白Sp1和类红细胞限制性因子EKLF(类红细胞Krüppel样因子)协同激活转录。识别GC和/或GT / CACC主题。 GATA-1和这些Krüppel蛋白(特别是Sp1)的结合位点在许多类红细胞表达基因的启动子和增强子中紧密结合,并且似乎在指导其表达方面起着协同作用。我们已经表明,GATA-1与Sp1和EKLF发生物理相互作用,并且这种相互作用是通过它们各自的DNA结合结构域介导的。此外,我们表明,GATA-1和Sp1在构造上模仿球蛋白基因座控制区和下游球蛋白启动子的结构中,从远处协同作用。最后,在没有GATA结合位点的情况下,Sp1将GATA-1募集到启动子的能力在体内证明了GATA-1-SP1复合物的形成。这些实验为参与类红细胞特异性表达的功能上重要的蛋白质-蛋白质相互作用提供了第一个证据,并提出了一种机制,通过该机制可以形成或稳定基因座控制区和球蛋白启动子(或增强子)之间的DNA环。

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