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Stability of the Sp3-DNA complex is promoter-specific: Sp3 efficiently competes with Sp1 for binding to promoters containing multiple Sp-sites

机译:Sp3-DNA复合物的稳定性是启动子特异性的:Sp3与Sp1有效竞争与包含多个Sp位点的启动子结合

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摘要

The transcription regulatory protein Sp3 shares more than 90% sequence homology with Sp1 in the DNA-binding domain and they bind to the same cognate DNA-element. However, the transcriptional activities of these two Sp-family factors are not equivalent. While Sp1 functions strictly as a transcriptional activator, Sp3 has been shown to be transcriptionally inactive for promoters containing multiple Sp-binding sites. In the present study, we show that the DNA-binding property of Sp3 is promoter dependent and is different from Sp1. The 116 kDa Sp3 polypeptide binds as a monomer to a single Sp-binding site but readily forms slower migrating complexes with adjacent Sp-binding sites. The slower migrating Sp3-DNA complexes are significantly more stable than monomeric Sp3-DNA complexes or multimeric Sp1-DNA complexes. As a consequence, Sp3 can efficiently compete with Sp1 for binding to regions containing multiple Sp sites. The transcription regulatory function of Sp3 is also significantly different from Sp1. Unlike Sp1, Sp3 does not synergistically activate transcription of promoters containing multiple Sp-binding sites. Therefore, although Sp3 is a transcription activator, Sp3 reduces Sp1-dependent transcription activator, Sp3 reduces Sp1-dependent transcription of promoters containing adjacent Sp-binding sites by competing with Sp1 for promoter occupancy and thereby blocking the synergistic transactivation function of Sp1. Taken together, this study provides a possible mechanism of the promoter-specific transcription repression function of Sp3.
机译:转录调节蛋白Sp3在DNA结合域中与Sp1共享90%以上的序列同源性,并且它们与相同的同源DNA元件结合。但是,这两个Sp家族因子的转录活性并不相同。虽然Sp1严格起转录激活剂的作用,但已显示Sp3对于包含多个Sp结合位点的启动子在转录上无活性。在本研究中,我们表明Sp3的DNA结合特性是启动子依赖性的,并且不同于Sp1。 116 kDa Sp3多肽作为单体与单个Sp结合位点结合,但容易与相邻的Sp结合位点形成较慢的迁移复合物。迁移较慢的Sp3-DNA复合物比单体Sp3-DNA复合物或多聚Sp1-DNA复合物稳定得多。结果,Sp3可以有效地与Sp1竞争结合到包含多个Sp位点的区域。 Sp3的转录调节功能也与Sp1显着不同。与Sp1不同,Sp3不能协同激活包含多个Sp结合位点的启动子的转录。因此,尽管Sp3是转录激活因子,但Sp3降低了Sp1依赖性转录激活因子,但Sp3通过与Sp1竞争启动子占用,从而降低了包含相邻Sp结合位点的启动子的Sp1依赖性转录,从而阻断了Sp1的协同反激活功能。综上所述,该研究提供了Sp3的启动子特异性转录抑制功能的可能机制。

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