首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Ribosomal gene promoter domains can function as artificial enhancers of RNA polymerase I transcription supporting a promoter origin for natural enhancers in Xenopus.
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Ribosomal gene promoter domains can function as artificial enhancers of RNA polymerase I transcription supporting a promoter origin for natural enhancers in Xenopus.

机译:核糖体基因启动子结构域可以充当RNA聚合酶I转录的人工增强子从而为非洲爪蟾中的自然增强子提供启动子来源。

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摘要

Enhancers of RNA polymerase I transcription in higher eukaryotes are repetitive elements within the intergenic spacers of rRNA genes. In Xenopus and mouse, enhancers and the gene promoter bind the activator protein, upstream binding factor, and in Xenopus, enhancers also share sequence similarity with an upstream domain of the promoter. This upstream promoter domain can act as an efficient enhancer when polymerized and cloned adjacent to a ribosomal gene promoter injected into oocytes. A core promoter domain lacking similarity with spacer sequences in Xenopus laevis but analogous to a repeated sequence in Xenopus borealis can also function as an enhancer. These data demonstrate functional relatedness between the promoter and enhancers, supporting the hypothesis that enhancers could have evolved from duplicated promoter domains that bind essential transcription factors. The ability of upstream binding factor to bind enhancers inactivated by mutation suggests that upstream binding factor binding alone cannot explain enhancer function.
机译:高级真核生物中RNA聚合酶I转录的增强子是rRNA基因的基因间隔区中的重复元件。在非洲爪蟾和小鼠中,增强子和基因启动子结合激活蛋白,上游结合因子,在非洲爪蟾中,增强子也与启动子的上游域共享序列相似性。当与注射入卵母细胞的核糖体基因启动子相邻地聚合和克隆时,该上游启动子结构域可以充当有效的增强子。核心启动子结构域与非洲爪蟾(Xenopus laevis)中的间隔区序列缺乏相似性,但类似于非洲爪蟾(Xenopusborealis)中的重复序列,也可以用作增强子。这些数据证明了启动子和增强子之间的功能相关性,支持了这样的假说,即增强子可能已经从重复的结合必需转录因子的启动子结构域进化而来。上游结合因子结合被突变灭活的增强子的能力表明,单独的上游结合因子结合不能解释增强子的功能。

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