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首页> 外文期刊>Nucleic acids research >Further sequence requirements for male germ cell-specific expression under the control of the 14 bp promoter element (β2UE1) of the Drosophila β2 tubulin gene
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Further sequence requirements for male germ cell-specific expression under the control of the 14 bp promoter element (β2UE1) of the Drosophila β2 tubulin gene

机译:果蝇β2微管蛋白基因的14 bp启动子元件(β2UE1)控制下雄性生殖细胞特异性表达的其他序列要求

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摘要

We have investigated a 14 bp promoter element (β2UE1) that is required for testis-specific expression of the Drosophila β2 tubulin gene. To further elucidate the role of the 14 bp element, we fused different promoter constructs to the E. coli lacZ gene and established transgenic strains with the aid of the Drosophila P-element transformation system. Germ line transformation experiments with constructs in which the element in the β2 tubulin gene promoter was exchanged for a related sequence from the promoter region of the Drosophila β3 tubulin gene led to a dramatic reduction in the expression of the lacZ gene in the testis. Exchanging the 14 bp promoter element for a similar sequence from the distal promoter of the Drosophila alcohol dehydrogenase gene abolished expression. This might indicate that the sequence differences between the β2UE1 and the β2UE1-related elements reflect functional differences between these elements. Constructs in which the β2UE1 was fused to the hsp70 promoter revealed that testis-specific expression of a marker gene is obtained only when the element is located at the correct distance from the transcription initiation site. However, constructs in which the β2UE1 was inserted at about the correct position (between ?41 and ?54 bp) upstream of a truncated β3 tubulin gene promoter did not show any expression. By making β2–β3 gene promoter fusions it was found that both the region surrounding the β3 transcription initiation site as well as the first 116 b of β3 leader sequences independently reduce testis-specific expression. These findings suggest that the testis-specific expression of the Drosophila β2 tubulin gene underlies a unique regulatory mechanism.
机译:我们研究了果蝇β2微管蛋白基因的睾丸特异性表达所需的14 bp启动子元件(β2UE1)。为了进一步阐明14 bp元件的作用,我们将不同的启动子构建体与大肠杆菌lacZ基因融合,并借助果蝇P元素转化系统建立了转基因菌株。用其中果蝇β3微管蛋白基因的启动子区域的β2微管蛋白基因启动子的相关序列交换为相关序列的构建体进行胚系转化实验,导致lacZ基因在睾丸中的表达显着降低。从果蝇酒精脱氢酶基因的远端启动子交换一个14 bp的启动子元件以类似的序列废除了表达。这可能表明β2UE1和β2UE1相关元件之间的序列差异反映了这些元件之间的功能差异。 β2UE1与hsp70启动子融合的构建体表明,只有当元件位于距转录起始位点正确距离处时,才能获得睾丸特异性表达的标记基因。但是,在截短的β3微管蛋白基因启动子上游的大约正确位置(β41至β54bp之间)插入β2UE1的构建体未显示任何表达。通过使β2-β3基因启动子融合,发现β3转录起始位点周围的区域以及β3前导序列的前116b都独立地降低了睾丸特异性表达。这些发现表明果蝇β2微管蛋白基因的睾丸特异性表达是独特的调节机制的基础。

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