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The expression profile and promoter analysis of ultraspiracle gene in the silkworm Bombyx mori

机译:家蚕超细气管基因的表达谱及启动子分析

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The nuclear receptor, ultraspiracle protein (USP), is a transcription factor and an essential component of a heterodimeric receptor complex with ecdysone receptor. However, the mechanisms underlying the transcriptional regulation of USP in silkworm are unknown. In this study, using dual-spike-in qPCR method, we examined the expression of Bombyx ultraspiracle gene (BmUSP) in various tissues of silkworm as well as expression changes after stimulation with ecdysone. The results showed that the expression levels of BmUSP gene varied in different tissues and were increased 2 h after exposure to ecdysone. To identify the molecular mechanism underlying the regulation of USP gene expression in silkworm Bombyx mori, promoter truncation analyses were performed using the luciferase reporter assay and Bac-to-Bac expression system in several tissues of B. mori. BmUSP gene promoter with 5' end serial deletions showed different levels of activity in various tissues, higher in fat body and Malpighian tubule. Deletion of the region from -485 to -445 and -307 to 281 upstream of BmUSP gene abolished and increased its promoter activity, respectively. This region contains AP-1, Dfd transcription factor binding sites. These results indicate that BmUSP are expressed at different levels in different tissues of the silkworm, but all are subjected to the regulation by ecdysone. This study would provide an important foundation for investigating the mechanism underlying the transcriptional regulation of BmUSP in the silkworm.
机译:核受体,超螺旋体蛋白(USP),是转录因子,是蜕皮激素受体与异二聚体受体复合物的重要组成部分。然而,USP在蚕中转录调控的潜在机制尚不清楚。在这项研究中,我们使用双重掺入qPCR方法,研究了家蚕各种组织中Bombyx超细气瓶基因(BmUSP)的表达以及蜕皮激素刺激后的表达变化。结果表明,BmUSP基因的表达水平在不同的组织中有所不同,并在暴露于蜕皮激素后2 h有所增加。为了确定家蚕中USP基因表达调控的分子机制,使用萤光素酶报告基因检测和家蚕Bac-to-Bac表达系统在家蚕中进行了启动子截短分析。具有5'末端序列缺失的BmUSP基因启动子在各种组织中表现出不同水平的活性,在脂肪体和Malpighian小管中更高。 BmUSP基因上游的-485至-445和-307至281区域的缺失分别被消除并增强了其启动子活性。该区域包含AP-1,Dfd转录因子结合位点。这些结果表明,BmUSP在家蚕的不同组织中以不同的水平表达,但是它们都受到蜕皮激素的调节。该研究为研究家蚕BmUSP的转录调控机制奠定了重要基础。

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