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Dual Requirement for the EcR/USP Nuclear Receptor and the dGATAb Factor in an Ecdysone Response in Drosophila melanogaster

机译:果蝇蜕皮激素反应中对EcR / USP核受体和dGATAb因子的双重要求

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摘要

The EcR/USP nuclear receptor controls Drosophila metamorphosis by activating complex cascades of gene transcription in response to pulses of the steroid hormone ecdysone at the end of larval development. Ecdysone release provides a ubiquitous signal for the activation of the receptor, but a number of its target genes are induced in a tissue- and stage-specific manner. Little is known about the molecular mechanisms involved in this developmental modulation of the EcR/USP-mediated pathway. Fbp1 is a good model of primary ecdysone response gene expressed in the fat body for addressing this question. We show here that the dGATAb factor binds to three target sites flanking an EcR/USP binding site in a 70-bp enhancer that controls the tissue and stage specificity of Fbp1 transcription. We demonstrate that one of these sites and proper expression of dGATAb are required for specific activation of the enhancer in the fat body. In addition, we provide further evidence that EcR/USP plays an essential role as a hormonal timer. Our study provides a striking example of the integration of molecular pathways at the level of a tissue-specific hormone response unit.
机译:EcR / USP核受体通过响应幼虫发育结束时类固醇激素蜕皮激素的脉冲而激活复杂的基因转录级联,从而控制果蝇的变态。蜕皮激素的释放为受体的激活提供了普遍存在的信号,但是它的许多靶基因是以组织和阶段特异性的方式被诱导的。关于这种参与EcR / USP介导途径的发育调控的分子机制知之甚少。 Fbp1是在脂肪体内表达的主要蜕皮激素反应基因的一个很好的模型,可以解决这个问题。我们在这里显示dGATAb因子结合到70bp增强子中EcR / USP结合位点侧翼的三个靶位点,该增强子控制Fbp1转录的组织和阶段特异性。我们证明了这些位点之一和dGATAb的正确表达是脂肪体内增强剂的特异性活化所必需的。此外,我们提供了进一步的证据,证明EcR / USP作为荷尔蒙计时器起着至关重要的作用。我们的研究提供了一个在组织特异性激素反应单元水平上分子途径整合的惊人例子。

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