首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Enhancer-promoter communication at the yellow gene of Drosophila melanogaster: diverse promoters participate in and regulate trans interactions.
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Enhancer-promoter communication at the yellow gene of Drosophila melanogaster: diverse promoters participate in and regulate trans interactions.

机译:果蝇果蝇黄色基因的增强子-启动子通讯:不同的启动子参与并调节反式相互作用。

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摘要

The many reports of trans interactions between homologous as well as nonhomologous loci in a wide variety of organisms argue that such interactions play an important role in gene regulation. The yellow locus of Drosophila is especially useful for investigating the mechanisms of trans interactions due to its ability to support transvection and the relative ease with which it can be altered by targeted gene replacement. In this study, we exploit these aspects of yellow to further our understanding of cis as well as trans forms of enhancer-promoter communication. Through the analysis of yellow alleles whose promoters have been replaced with wild-type or altered promoters from other genes, we show that mutation of single core promoter elements of two of the three heterologous promoters tested can influence whether yellow enhancers act in cis or in trans. This finding parallels observations of the yellow promoter, suggesting that the manner in which trans interactions are controlled by core promoter elements describes a general mechanism. We further demonstrate that heterologous promoters themselves can be activated in trans as well as participate in pairing-mediated insulator bypass. These results highlight the potential of diverse promoters to partake in many forms of trans interactions.
机译:多种生物体中同源位点和非同源位点之间的反式相互作用的许多报道都认为,这种相互作用在基因调控中起着重要的作用。果蝇的黄色基因座特别有助于研究反式相互作用的机制,这是由于其支持对转移的能力以及相对容易地通过靶向基因置换改变它的能力。在这项研究中,我们利用黄色的这些方面来进一步了解顺式以及增强子-启动子通讯的反式形式。通过分析其启动子已被野生型或其他基因的启动子替换的黄色等位基因,我们显示了测试的三个异源启动子中的两个的单核启动子元件的突变会影响黄色增强子是顺式还是反式。该发现与黄色启动子的观察结果相似,表明反式相互作用由核心启动子元件控制的方式描述了一般机制。我们进一步证明,异源启动子本身可以反式激活,并参与配对介导的绝缘子旁路。这些结果突出了不同启动子参与多种形式的反式相互作用的潜力。

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