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A view through a chromatin loop: insights into the ecdysone activation of early genes in Drosophila

机译:通过染色质环的视图:对果蝇早期基因蜕皮激素激活的见解

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The early genes are a key group of ecdysone targets that function at the top of the signaling hierarchy. In the presence of ecdysone, early genes exhibit a highly characteristic rapid and powerful induction that represents a primary response. Multiple isoforms encoded by early genes then coordinate the activation of a larger group of late genes. While the general mechanism of ecdysone-dependent transcription is well characterized, it is not known whether a distinct mechanism governs the hormonal response of early genes. We previously found that one of the Drosophila early genes, E75, harbors multiple functional ecdysone response elements (EcREs). In this study we extended the analysis to Broad and E74 and found that EcRE multiplicity is a general feature of the early genes. Since most of the EcREs within early gene loci are situated distantly from promoters, we employed the chromosome conformation capture method to determine whether higher order chromatin structure facilitates hormonal activation. For each early gene we detected chromatin loops that juxtapose their promoters and multiple distant EcREs prior to ecdysone activation. Our findings suggest that higher order chromatin structure may serve as an important mechanism underlying the distinct response of early genes to ecdysone.
机译:早期基因是蜕皮激素靶标的关键组,其在信号传导层级的顶部起作用。在蜕皮激素存在的情况下,早期基因表现出高度特征的快速而有力的诱导,这代表了主要的反应。然后,早期基因编码的多个同工型会协调一大批晚期基因的激活。虽然蜕皮激素依赖性转录的一般机制已被很好地表征,但尚不清楚是否有独特的机制控制早期基因的激素反应。我们以前发现果蝇早期基因之一,E75,具有多个功能蜕皮激素响应元件(EcREs)。在这项研究中,我们将分析扩展到Broad和E74,发现EcRE多重性是早期基因的普遍特征。由于早期基因位点中的大多数EcRE位于远离启动子的位置,因此我们采用了染色体构象捕获方法来确定更高阶的染色质结构是否促进激素激活。对于每个早期基因,我们在蜕皮激素激活之前检测到染色质环,这些染色质环将其启动子和多个远处的EcRE并置。我们的发现表明,较高级的染色质结构可能是早期基因对蜕皮激素不同反应的重要机制。

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