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Anterior epidermis-specific expression of the cuticle gene EDG84A is controlled by many cis-regulatory elements in Drosophila melanogaster

机译:表皮基因EDG84A的前表皮特异性表达受果蝇中许多顺式调控元件的控制

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摘要

During insect metamorphosis, a pulse of ecdysteroids induces many different morphological changes depending on different parts of the body. In Drosophila, although a number of transcription factors are expressed in a stage-specific manner in response to an ecdysteroid pulse, little is known on the regulatory mechanism for space-specific gene expression during metamorphosis. The EDG84A gene encoding pupal cuticle protein is one of the targets of ecdysteroid-inducible transcription factor betaFTZ-F1 and is expressed only in anterior epidermis of the body during mid- to late prepupal period, whereas betaFTZ-F1 is expressed in almost all tissues. To address the regulatory mechanism of the tissue-specific expression of the EDG84A gene, we established transgenic fly lines which carry various upstream regions of the gene fused to the LacZ gene and examined the expression pattern of the reporter gene. Results of the transgenic fly reporter assays showed that the space-specific expression is controlled by at least four positive and two negative elements within a 263-bp region near the transcription start site, and at least three of them showed space-specific effects to the anterior body trunk. These results suggest that both high expression level and differential expression are achieved through many cis-regulatory elements.
机译:在昆虫变态期间,蜕皮类固醇的脉冲会根据身体的不同部位引起许多不同的形态变化。在果蝇中,尽管许多转录因子响应蜕皮激素脉冲以阶段特异性方式表达,但对于在变态过程中空间特异性基因表达的调控机制知之甚少。编码p表皮蛋白的EDG84A基因是蜕皮甾类可诱导的转录因子betaFTZ-F1的靶标之一,仅在椎间盘中晚期之前在人体的前表皮中表达,而betaFTZ-F1则在几乎所有组织中表达。为了解决EDG84A基因的组织特异性表达的调控机制,我们建立了携带与LacZ基因融合的基因的各个上游区域的转基因蝇系,并检查了报告基因的表达模式。转基因蝇报道基因分析的结果表明,空间特异性表达受转录起始位点附近263 bp区域内至少四个正和两个负元素的控制,其中至少三个对空间表达有空间特异性作用。前体躯干。这些结果表明高表达水平和差异表达都通过许多顺式调控元件实现。

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