首页> 外文期刊>Nucleic Acids Research >Sp1 activation of a TATA-less promoter requires a species-specific interaction involving transcription factor IID.
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Sp1 activation of a TATA-less promoter requires a species-specific interaction involving transcription factor IID.

机译:TATA少启动子的Sp1激活需要涉及转录因子IID的物种特异性相互作用。

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摘要

Sp1 is a ubiquitous activator of numerous TATA-containing and TATA-less promoters within the human genome. This transcription factor is distinct from several other mammalian activators because it cannot stimulate transcription of reporter genes when ectopically expressed in Saccharomyces cerevisiae . Here we report that in cultured cells from Drosophila melanogaster human Sp1 efficiently activates transcription from synthetic promoters containing TATA boxes, but not from promoters that contain an initiator instead of a TATA box. The inability of Sp1 to activate initiator-mediated transcription did not result from inactivity of the consensus initiator element used for the experiments, as other initiator functions were conserved in Drosophila cells. Interestingly, a difference between the Drosophila and human TFIID complexes was found to be responsible for the selective inability of Sp1 to activate initiator-mediated transcription in Drosophila; in a complementation assay with a TFIID-depleted HeLa cell extract both the Drosophila and human TFIID complexes supported TATA-mediated transcription, but only the human complex supported initiator-mediated transcription. These results suggest that a species-specific interaction is required for activation of TATA-less promoters by Sp1, revealing a difference in transcriptional activation mechanisms between vertebrates and invertebrates.
机译:Sp1是人类基因组中许多含TATA和无TATA的启动子的普遍激活因子。这种转录因子与其他几种哺乳动物激活因子不同,因为当在酿酒酵母中异位表达时它不能刺激报告基因的转录。在这里,我们报道在果蝇果蝇的培养细胞中,人Sp1有效激活了包含TATA盒的合成启动子的转录,但没有激活包含启动子而不是TATA盒的启动子的转录。 Sp1不能激活启动子介导的转录不是由于实验中使用的共有启动子元件不活跃所致,因为其他启动子功能在果蝇细胞中得以保留。有趣的是,发现果蝇和人TFIID复合物之间的差异是Sp1选择性无法激活果蝇中启动子介导的转录的原因。在用耗尽TFIID的HeLa细胞提取物进行的互补测定中,果蝇和人TFIID复合物均支持TATA介导的转录,但只有人复合物支持引发剂介导的转录。这些结果表明,物种特异性相互作用是Sp1激活TATA-less启动子所必需的,揭示了脊椎动物和无脊椎动物之间转录激活机制的差异。

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